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EP3393318B1 - Temperierkörper-anordnung sowie vorwand-anordnung mit einer solchen temperierkörper-anordnung - Google Patents

Temperierkörper-anordnung sowie vorwand-anordnung mit einer solchen temperierkörper-anordnung Download PDF

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Publication number
EP3393318B1
EP3393318B1 EP16831520.8A EP16831520A EP3393318B1 EP 3393318 B1 EP3393318 B1 EP 3393318B1 EP 16831520 A EP16831520 A EP 16831520A EP 3393318 B1 EP3393318 B1 EP 3393318B1
Authority
EP
European Patent Office
Prior art keywords
temperature
housing
adjustment
cover
temperature control
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP16831520.8A
Other languages
German (de)
French (fr)
Other versions
EP3393318A1 (en
EP3393318B8 (en
Inventor
Thomas Schneider
Thomas KLINK
Michael Lammel
Benjamin LEDERHOFER
Felix BERROCOSO
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Zehnder Group International AG
Original Assignee
Zehnder Group International AG
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Zehnder Group International AG filed Critical Zehnder Group International AG
Priority to PL16831520T priority Critical patent/PL3393318T3/en
Priority to EP20161990.5A priority patent/EP3682778B1/en
Publication of EP3393318A1 publication Critical patent/EP3393318A1/en
Publication of EP3393318B1 publication Critical patent/EP3393318B1/en
Application granted granted Critical
Publication of EP3393318B8 publication Critical patent/EP3393318B8/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24DDOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D19/00Details
    • F24D19/02Arrangement of mountings or supports for radiators
    • F24D19/024Functioning details of supporting means for radiators
    • F24D19/0293Radiators rotating without being demounted
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47KSANITARY EQUIPMENT NOT OTHERWISE PROVIDED FOR; TOILET ACCESSORIES
    • A47K10/00Body-drying implements; Toilet paper; Holders therefor
    • A47K10/04Towel racks; Towel rails; Towel rods; Towel rolls, e.g. rotatable
    • A47K10/06Towel racks; Towel rails; Towel rods; Towel rolls, e.g. rotatable combined with means for drying towels
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F57/00Supporting means, other than simple clothes-lines, for linen or garments to be dried or aired 
    • D06F57/12Supporting means, other than simple clothes-lines, for linen or garments to be dried or aired  specially adapted for attachment to walls, ceilings, stoves, or other structures or objects
    • D06F57/127Supporting means, other than simple clothes-lines, for linen or garments to be dried or aired  specially adapted for attachment to walls, ceilings, stoves, or other structures or objects for attachment or suspension to central heating radiators

Definitions

  • the invention relates to a temperature control body arrangement and to a pretext arrangement with such a temperature control body arrangement.
  • Such a temperature control arrangement is for example in US 4 927 995 A. or US 2010/0206862 A1 described.
  • Temperature control bodies for heating or cooling are known. There are e.g. electrical variants in which the temperature control body is electrically (resistively) heated or (thermoelectrically) cooled. On the other hand, there are hydronic variants in which a heat transfer fluid flows through the temperature control body, the temperature of which, depending on requirements (heating or cooling), is sufficiently high above or sufficiently low below the ambient temperature. Such temperature control bodies with a cover element are also known.
  • the object of the invention is to provide a temperature control body arrangement which effectively enables both the temperature control of an entire room and the intensive temperature control of an object.
  • the invention provides a temperature control body arrangement according to the technical teaching of claim 1.
  • the object to be temperature-controlled in the housing in the immediate vicinity of the temperature control body, so that the object experiences intensive temperature control.
  • the entire room in which the inventive tempering arrangement is located is tempered located.
  • the object to be heated intensively is, for example, a bath towel.
  • the room to be tempered is, for example, a bathroom.
  • cover element covers the opening of the housing, one forms in the interior of the housing due to the restricted air convection and the radiation balance prevailing there between the surfaces of the (e.g. hydronic) temperature-controlled pipe register and the surfaces of the support element, the frame element and the cover element that define the housing Cavity air temperature, which is closer to the surface temperature of the temperature-controlled pipe register than the air temperature of the temperature-controlled room outside the housing of the temperature control arrangement.
  • the cover element per se and in particular the inner surface of the cover element facing the cavity of the housing are of particular importance here.
  • the at least one temperature control body comprises a tube register through which a heat transfer fluid can flow, with a feed line and a return line for the heat transfer fluid.
  • the at least one temperature control body can be a heating element or cooling element through which electrical current can flow, with a supply line and a discharge line for the electrical current.
  • the temperature control element can be a resistive heating element, a thermoelectric cooling element or a heating element filled with water or oil with an electrical heating cartridge.
  • the temperature control body arrangement contains at least one suspension means in the interior of the housing.
  • Objects to be tempered intensively such as a towel, a piece of clothing, shoes, etc.
  • the suspension means in the interior of the housing When hung up A particularly large surface of an object to be tempered is exposed to the cavity air temperature and the radiation inside the housing, so that the object can be heated intensively and quickly by heat conduction, air convection and heat radiation.
  • this opening is preferably not completely closed, so that sufficient natural or forced convection of the air can also take place inside the housing.
  • the carrier element and the frame element can be rigidly connected to one another, which contributes to the stabilization of the housing and thus the entire temperature control arrangement.
  • the at least one temperature control body is preferably arranged in the housing. This enables an intensive thermal exchange between the temperature control body and the cavity of the housing.
  • the at least one temperature control body is thermally decoupled from the surroundings of the temperature control body arrangement by means of the housing.
  • the carrier element and frame element of the housing can have thermally insulating layers.
  • a layer-like structure with a thermally (and electrically) poorly conductive insulation layer in the interior of the carrier element and / or the frame element and a thermally (and electrically) highly conductive reflection layer on the surface of the carrier element and / or the frame element facing the housing cavity is particularly advantageous .
  • Temperature control body by means of a heat-conducting paste or a heat-conducting adhesive with the cover element to be thermally conductively connected.
  • the at least one temperature control body can be on a surface of the cover element or in the cover element, e.g. be embedded between two panes of glass.
  • a heat-conducting adhesive an adhesive, e.g. a graphite / water glass mass can be used.
  • the at least one temperature control body is preferably arranged on the side of the cover element facing the housing. This also contributes to the thermal decoupling of the at least one temperature control body from the surroundings of the temperature control body arrangement.
  • a fan is arranged in the interior of the housing.
  • the fan can be arranged in the lower area or upper area of the housing.
  • forced convection forced convection
  • an air flow can be generated which is directed over a towel suspended in the housing.
  • the housing has at least one further opening in addition to the large housing opening mentioned.
  • Two further openings are preferably provided, one of which can optionally be closed.
  • the cover element also has at least one opening.
  • two further openings are also provided here, one of which can optionally be closed.
  • the fan together with the gap between the cover element and the housing as well as the various optional further openings enable the air convection current to be adjusted as required within and outside the temperature control body arrangement and in particular an effective drying / heating of a towel suspended in the housing.
  • the temperature control body arrangement can additionally have a water supply connection for moistening the interior of the housing and / or a water discharge connection for dehumidifying the interior of the housing.
  • a water supply connection for moistening the interior of the housing
  • a water discharge connection for dehumidifying the interior of the housing.
  • the temperature control body arrangement can have an electrical heating element. This allows short-term peaks in demand, in particular for heating / drying, to be served.
  • the electric heating element is preferably assigned to the fan.
  • the at least one tube register is formed from polymer material. This prevents corrosion problems on the register in the event of humidification, for example when evaporating sprayed and / or atomized water on a hot pipe register, or in the case of dehumidification, for example when condensing water vapor from the air on a cold pipe register.
  • the temperature control body arrangement according to the invention is in a piece of furniture, such as a wall unit, or integrated into an intermediate wall or a room divider.
  • the temperature control body arrangement expediently contains at least one additional storage space which is arranged next to the housing of the temperature control body arrangement.
  • the at least one storage space is preferably separated from the housing of the temperature control body arrangement by an intermediate wall.
  • the intermediate wall preferably contains openings which allow an air exchange between the at least one additional storage space and the interior of the housing of the temperature control body arrangement.
  • the temperature control body arrangement according to the invention preferably contains a lateral storage space which is arranged next to the housing of the temperature control body arrangement and / or an upper storage space which is arranged above the housing of the temperature control body arrangement.
  • the cover element expediently has a light function.
  • the cover element preferably contains a passive light function and / or an active light function.
  • the passive light function is preferably formed in that the cover element is light-conducting and / or light-scattering at least in partial areas.
  • the active light function is preferably formed by at least one light source which is assigned to the cover element, the at least one light source preferably being arranged in the cover element or on the cover element.
  • the light generated by the at least one light source is coupled into the light-guiding and / or light-scattering partial area of the cover element. The light thus coupled in can be passed on and / or scattered in the partial area. Diffuse indirect lighting of the surroundings of the cover element can thereby be achieved.
  • the invention also relates to a pretext arrangement in which a temperature control arrangement according to the description above is integrated.
  • the cover element and the pretext can be arranged flush / flush.
  • the cover element and possibly a part of the housing or the entire housing protrude from the front wall.
  • FIG. 1 A temperature control body arrangement 1 is shown.
  • the temperature control body arrangement 1 is arranged on a floor B and on a wall W. It contains a carrier element 2, a frame element 3, a cover element 4 as well as a register packet RR through which a heat transfer fluid flows and an electrical heating element EE through which an electrical current can flow.
  • the carrier element 2 is a plate-like structure which bears against the wall W or extends parallel to the wall W with a gap between the wall and the carrier element 2.
  • the carrier element 2 and the frame element 3 together form a housing 2, 3 which surrounds the register package RR.
  • An upper part and a lower part of the frame element 3 can be seen in vertical section.
  • the carrier element 2 and the frame element 3 are rigidly connected to one another.
  • the register packet RR is composed of six pipe registers RR1, RR2, RR3, RR4, RR5, RR6.
  • the ends of the distributor pipes VR of the individual pipe registers RR1, RR2, RR3, RR4, RR5, RR6 are connected to one another by means of pipe register end pieces RE in such a way that the distributor pipes VR are in fluid communication with one another.
  • the individual raw registers RR1, RR2, RR3, RR4, RR5, RR6 can be connected in series and / or in parallel with one another in terms of fluid technology.
  • some of the pipe registers RR1, RR2, RR3, RR4, RR5, RR6 can be connected in series and some more of the pipe registers RR1, RR2, RR3, RR4, RR5, RR6 can be connected in parallel.
  • the register packet RR is by means of flexible lines, not shown in the figure, such as e.g. Armored hoses, connected to a flow line and a return line for the heat transfer fluid.
  • the flow line and the return line are arranged in a channel-shaped feed line 5 and a channel-shaped discharge line 6, respectively below the lower part of the frame element 3.
  • the cover element 4 is rotatably arranged with respect to the carrier element 2 by means of articulation elements (not shown in the figure) with respect to the frame element 3 about a horizontal axis A on the lower part of the frame element 3.
  • the cover element is thus movable between a vertical first position S1, in which the cover element 4 covers an opening 7 of the housing 2, 3, and an oblique second position S2, in which the cover element 4 does not cover the opening 7 of the housing 2, 3.
  • the cover element 4 can be arranged rotatably about a vertical axis on a lateral part of the frame element 3 with respect to the carrier element 2 by means of joint elements (not shown in the figure) with respect to the frame element 3.
  • the cover element 4 can thus also be moved between a first position in which the cover element 4 has the opening 7 of the housing 2, 3 covers, and a second position in which the cover element 4 does not cover the opening 7 of the housing 2, 3.
  • the electric heating element EE is arranged on the side of the cover element 4 facing the housing 2, 3 and is connected to a power source by means of flexible power lines (not shown in the figure). This leads to the fact that on the inside 4a of the cover element 4, when the heating element EE is switched on, there is a greater surface temperature than on the outside 4b of the cover element 4.
  • the power line (s) for the power supply and current drain are also in the channel-shaped supply line 5 or the channel-shaped Derivation 6 each arranged below the lower part of the frame element 3.
  • the register packet RR arranged in the interior of the housing 2, 3 is thermally decoupled from the surroundings of the temperature control body arrangement 1 by means of the housing 2, 3 and by means of the cover element 4 in its vertical first position S1.
  • the register package RR with warm heat transfer fluid and / or the electrically resistive heating element EE is switched on, the temperature inside the housing 2, 3 is therefore higher than outside the housing 2, 3.
  • a horizontal partition HZW is provided in the interior of the housing 2, 3 and extends transversely between the carrier element 2 and the frame element 3 in the upper part of the housing 2, 3.
  • This horizontal partition wall HZW separates the inside of the housing 2, 3 into an upper chamber K1, in which the fan 9 is located, and a lower chamber K2, in which the register packet RR is located.
  • the horizontal partition wall HZW prevents a short-circuit flow of the air emerging from the fan 9 through the openings 12 and 13.
  • the temperature control body arrangement 1 also contains a fan 9 which is arranged in the interior of the housing 2, 3 in the upper region and in particular above the register package RR.
  • Another electrical heating element 17 is arranged at the air outlet of the fan 9.
  • the temperature control body arrangement 1 contains a control panel 19 above the cover element 4, on which a plurality of control elements B1, B2, B3, B4, B5, B6 for operating the register package R, the electrical heating element EE, the fan 19 and the further electrical heating element 17 are provided.
  • the temperature control body arrangement 1 has further openings 11, 12, 13, 14 (see also Fig. 4 ), each of which allows air to pass through and thus overall air flow through the housing 2, 3.
  • the cover element 4 has at its upper edge a centrally arranged trapezoidal opening 11, which on the one hand allows air to pass through and on the other hand serves as a handle recess where one can grasp the upper end of the cover element 4 and move it from its vertical first position S1 in can move its inclined second position S2 and back again.
  • the air inlet opening of the fan 9 is located inside the housing 2, 3 behind the upper horizontal region of the gap 13, the center of the air inlet opening of the fan 9 being at a height between the height of the slot-like opening 12 and the height of the upper one horizontal region of the gap 13 lies.
  • the temperature control body arrangement 1 contains, in its support element 2 and / or in its frame element 3, water supply connections 15 with spray nozzles and / or atomizing nozzles. In addition, the temperature control body arrangement 1 contains, in the lower region of its frame element 3, a water discharge connection 16 with a water collecting pan 18.
  • the water supply connections 15 serve to moisten the inside of the housing 2, 3 and the water discharge connection 16 to dehumidify the inside of the housing 2, 3.
  • the register package RR and through the electrical heating element EE formed surface on the inside 4a of the cover member 4 are formed of polymer material.
  • the first exemplary embodiment of the temperature control body arrangement 1 according to the invention shown enables very versatile operation for temperature control of a room, on or in the wall of which the temperature control body arrangement 1 is arranged. It can be used for heating or cooling on the one hand and for humidifying or dehumidifying the room air on the other.
  • the register package RR When heating , the register package RR is flowed through with warm to hot water. Alternatively or in addition, electrical current is supplied to the electrical heating element EE.
  • the heat given off by the register packet RR and / or the electrical heating element EE by radiation and heat conduction into the interior of the housing 2, 3 leads to an increase in the temperature inside the housing 2, 3, which results in natural convection over the two vertical regions of the gap 13 and the optional openings 14 of the temperature control body arrangement 1 is set in motion.
  • the air heated in the housing 2, 3 thus enters the room via the upper openings of the temperature control body arrangement 1, as a result of which the room air is heated, and returns to the housing 2, 3 via the lower openings of the temperature control body arrangement 1.
  • this natural convection can be intensified by the fan 9 or vice versa.
  • the fan 9 promotes the air in the housing 2, 3 from bottom to top (in Fig. 1 not shown) or from top to bottom (in Fig. 1 shown).
  • the further heating element 17 can be additionally activated, as a result of which the air conveyed by the fan 9 is heated even further.
  • the register package RR When cooling , the register package RR is flowed through with cool to cold water. No electrical current is supplied to the electrical heating element EE.
  • the heat extracted by the register packet RR due to radiation and heat conduction in the interior of the housing 2, 3 leads to a lowering of the temperature in the interior of the housing 2, 3, as a result of which natural convection via the two vertical regions of the gap 13 and via the optional openings 14 the temperature control body arrangement 1 is started.
  • the cooled in the housing 2, 3 Air thus enters the room via the lower openings of the temperature control body arrangement 1, as a result of which the room air is cooled, and reaches the housing 2, 3 again via the upper openings of the temperature control body arrangement 1.
  • this natural convection can also be reinforced by the fan 9 or vice versa.
  • the fan 9 promotes the air in the housing 2, 3 from top to bottom (in Fig. 1 shown) or from bottom to top (in Fig. 1 Not shown).
  • the air When the air is humidified, hot water flows through the RR register package.
  • the temperature of the hot water should be as high as possible above the dew point of the air with the desired moisture content.
  • electrical current is supplied to the electrical heating element EE.
  • water is discharged into the interior of the housing 2, 3 via the water supply connections 15 arranged in the carrier element 2 and / or in the frame element 3 via the spray nozzles and / or atomizing nozzles.
  • the water present in the form of water droplets in the air or as a wetting water film on the register package RR and / or on the electrical heating element EE in the housing is evaporated by the heating power of the register package RR and / or the electrical heating element EE.
  • the heat emitted by the register package RR and / or the electric heating element EE in addition to the evaporation power inside the housing 2, 3 also leads to an increase in the temperature of the humidified air inside the housing 2, 3, which results in natural convection via the openings 11, 12 and 13 and the optional openings 14 of the temperature control body arrangement 1 is set in motion.
  • the heated and humidified air in the housing 2, 3 thus enters the room via the upper openings of the temperature control body arrangement 1, as a result of which the room air is heated and humidified, and returns to the housing 2 via the lower openings of the temperature control body arrangement 1 , 3rd
  • this natural convection can be intensified by the fan 9 or vice versa.
  • the fan 9 promotes the heated and humidified air in the housing 2, 3 from bottom to top (in Fig. 1 not shown) or from top to bottom (in Fig. 1 shown).
  • the additional heating element 17 can also be activated here, as a result of which the fan 9 conveyed air is heated even further. If there are not yet evaporated water droplets in the air stream, these are evaporated on the further heating element 17.
  • thermoelectric cooling element EE When the air is dehumidified, cold water flows through the RR register package.
  • the temperature of the cold water should be as low as possible below the dew point of the air with the desired moisture content.
  • electrical current is supplied to the thermoelectric cooling element EE.
  • the condensed water resulting from the cooling capacity of the register package RR and / or the thermoelectric cooling element EE in the form of water droplets in the air or as a wetting water film on the register package RR and / or on the thermoelectric cooling element EE in the housing passes through the action of gravity the water collecting pan 18 in the lower region of the frame element 3 into the water drainage connection 16 and is discharged.
  • the air cooled and dehumidified in the housing 2, 3 thus enters the room through the lower openings of the temperature control body arrangement 1, as a result of which the room air is cooled and dehumidified, and returns to the housing 2 via the upper openings of the temperature control body arrangement 1 , 3rd
  • this natural convection can be intensified by the fan 9 or vice versa.
  • the fan 9 conveys the cooled and dehumidified air in the housing 2, 3 from top to bottom (in Fig. 1 shown) or from bottom to top (in Fig. 1 Not shown).
  • water droplets floating in the air and the wetting water film on the register packet RR (and / or on the thermoelectric cooling element EE) are blown downward in the interior of the housing 2, 3, whereby (a large part of the condensed water) the condensed water ultimately drips into the water collecting pan 18.
  • FIG. 2 A second exemplary embodiment of the temperature control body arrangement 1 according to the invention is shown.
  • the temperature control body arrangement 1 is arranged on a floor B and on a wall W. It contains a carrier element 2, a frame element 3, a cover element 4 as well as a register packet RR through which a heat transfer fluid flows and an electrical heating element EE through which an electrical current can flow.
  • the structure of the second exemplary embodiment largely corresponds to the structure of the first exemplary embodiment. All elements of the in Fig. 2 shown second embodiment, that of the in Fig. 1 shown first embodiment 1, in Fig. 2 the same reference numerals as in Fig. 1 .
  • the second exemplary embodiment differs from the first exemplary embodiment in that the register packet RR is only composed of four registers RR1, RR2, RR3, RR4 and is therefore less thick than the register packet RR from Fig. 1 is.
  • the second exemplary embodiment differs from the first exemplary embodiment in that the register packet RR has on its side facing the cover element 4 a vertical intermediate wall VZW which extends from the lower end of the fan 9 to the lower end of the register packet RR.
  • This vertical partition VZW separates the inside of the housing 2, 3 into a rear chamber K3, which contains the register package RR, and a front chamber K4.
  • the second exemplary embodiment differs from the first exemplary embodiment in that a suspension means 8 is provided in the interior of the housing 2, 3 in the front chamber K4.
  • This suspension means 8 is in a horizontal direction parallel to the plane of the register packet RR (ie perpendicular to the plane of the drawing) Fig. 1 ) extending bracket 8, which is fixed to the vertical partition ZW.
  • a towel H can be hung on this bracket 8, which then hangs from the bracket 8 in the front chamber K4.
  • the second exemplary embodiment differs from the first exemplary embodiment in that no water supply connections 15 with spray nozzles and / or atomizing nozzles are provided.
  • the second exemplary embodiment differs from the first exemplary embodiment in that a horizontal intermediate wall HZW is provided, which extends between the fan 9 and the cover element 4.
  • the horizontal partition wall HZW prevents a short-circuit flow of the air emerging from the fan 9 through the openings 12 and 13.
  • the second exemplary embodiment of the temperature control body arrangement 1 enables drying and heating of a towel H.
  • it can be used on the one hand for heating or cooling and on the other hand for humidifying or dehumidifying the room air.
  • the heating, cooling or dehumidifying take place in the part of the housing 2, 3 formed by the rear chamber K1, similarly to the heating, cooling or dehumidifying in the entire housing 2, 3 in the first exemplary embodiment. That for heating, cooling and dehumidifying in Fig. 1 What has been said applies accordingly to heating, cooling and dehumidifying Fig. 2 .
  • hot water flows through the register package RR.
  • the temperature of the hot water should again be as high as possible above the dew point of the air with the desired moisture content.
  • electrical current is supplied to the electrical heating element EE.
  • water is released into the interior of the housing 2, 3 via the wet towel H hanging on the bracket 8 in the front chamber K2.
  • the water present in the form of water droplets in the air or as water drops and / or as a wetting water film on the vertical intermediate wall ZW or on the electrical heating element EE in the housing is evaporated by the heating power of the register package RR and / or the electrical heating element EE.
  • the heat given off by the register package RR and / or the electric heating element EE in addition to the evaporation power into the interior of the housing 2, 3 also leads to an increase in the temperature of the humidified air inside the housing 2, 3, as a result of which natural convection via the openings 11, 12 and 13 and via the optional openings 14 of the temperature control body arrangement 1 is started.
  • the heated and humidified air in the front chamber K4 of the housing 2, 3 thus enters the room via the upper openings of the temperature control body arrangement 1, as a result of which the room air is heated and humidified, and arrives again via the lower openings of the temperature control body arrangement 1 back into the housing 2, 3.
  • this natural convection can be intensified by the fan 9 or vice versa.
  • the fan 9 promotes the heated and humidified air originating from the wet towel H in the front chamber K4 from bottom to top (in Fig. 1 not shown) or preferably from top to bottom (in Fig. 1 shown).
  • the additional heating element 17 can also be activated here, so that the air conveyed by the fan 9 is even stronger than by the Register package RR and / or the electric heating element EE is heated.
  • the air driven and heated by the fan 9 flows in the front chamber K4 from top to bottom along the hanging towel H. From the front chamber K4, a first part of this heated and humidified air by the towel H enters the room via the two vertical regions of the gap 13 and the lower horizontal part of the gap 13.
  • a second part of this heated and humidified by the towel H air from the front chamber K4 passes in the lower region of the housing 2, 3 from the front chamber K4 into the rear chamber K3, is heated there by the warm register package RR and rises in the rear Chamber K3 along the register packet RR upwards to finally enter the room via the horizontal slot-like opening 12.
  • Water dripping from the wet towel H goes directly into the water collecting pan 18 and from there into the water drainage connection 16 and is discharged.
  • FIG. 3 A third exemplary embodiment of the temperature control body arrangement 1 according to the invention is shown.
  • the temperature control body arrangement 1 is on a floor B and arranged on a wall W. It contains a carrier element 2, a frame element 3, a cover element 4 and an electrical heating element EE through which an electrical current can flow.
  • the structure of the third exemplary embodiment largely corresponds to the structure of the first and second exemplary embodiments. All elements of the in Fig. 3 shown third embodiment, that of the in Fig. 1 and in Fig. 2 shown embodiments correspond to in Fig. 3 the same reference numerals as in Fig. 1 or in Fig. 2 .
  • the third exemplary embodiment differs from the second exemplary embodiment firstly in that there is no register packet RR.
  • the third exemplary embodiment differs from the second exemplary embodiment in that there is no vertical partition VZW.
  • the third exemplary embodiment differs from the second exemplary embodiment in that a further suspension means 8 is provided, which is fastened to the carrier element 2.
  • the third exemplary embodiment differs from the second exemplary embodiment in that a horizontal intermediate wall HZW is provided as in the first exemplary embodiment, which extends transversely between the carrier element 2 and the frame element 3 in the upper part of the housing 2, 3.
  • This horizontal partition wall HZW separates the inside of the housing 2, 3 into an upper chamber K1, in which the fan 9 is located, and a lower chamber K2, in which the two suspension means or brackets 8 and two towels H1 and H2 suspended thereon are located.
  • the horizontal partition wall HZW prevents a short-circuit flow of the air emerging from the fan 9 through the openings 12 and 13.
  • the third exemplary embodiment of the temperature control body arrangement 1 according to the invention shown allows, primarily when the electric heating element EE is switched on, drying and heating one or more towels H1, H2.
  • it can be used for heating on the one hand and for moistening the other Indoor air can be used.
  • a forced convection of the air through the housing 2, 3 generated by the fan 9 is provided from top to bottom.
  • the further heating element 17 arranged on the fan 9 can be switched on, as a result of which the heating power of the heating element EE and thus the drying power of the temperature control body arrangement 1 can be increased still further.
  • Fig. 4 is a schematic front view (front view) of the inventive tempering body arrangement 1 of Fig. 1 , Fig. 2 and Fig. 3 shown.
  • the wall W and the cover element 4 of the temperature control body arrangement 1 can be seen.
  • the control panel 19 with control elements B1, B2, B3, B4, B5, B6 extends above the cover element 4.
  • the view shown is the opening 7 of the housing 2, 3 surrounded by the frame element 3 (see Fig. 1 ) covered with its cover element 4 pivoted up in its vertical first position S1.
  • the temperature control body arrangement 1 has further openings 11, 12, 13, 14 (see also Fig. 1 ), each of which allows air to pass through and thus overall air flow through the housing 2, 3.
  • the cover element 4 has at its upper edge a centrally arranged trapezoidal opening 11, which on the one hand allows air to pass through and on the other hand serves as a handle recess where one can grasp the upper end of the cover element 4 and move it from its vertical first position S1 in can move its inclined second position S2 and back again.
  • the temperature control body arrangement 1 contains a lower temperature control body arrangement 1a and an upper temperature control body arrangement 1b.
  • the temperature control body arrangement 1 is arranged above a floor B and on a wall W. It contains a carrier element 2, a frame element 3 ', a cover element 4 and an electrical heating element EE through which an electrical current can flow.
  • the structure of the fourth embodiment largely corresponds to the structure of the third embodiment. All elements of the in Fig. 5 shown fourth embodiment, that of the in Fig. 3 shown Correspond to embodiment, wear in Fig. 5 the same reference numerals as in Fig. 3 .
  • no register packet RR (see Fig. 1 , Fig. 2 ) available.
  • a further suspension means 8 is provided, which is fastened to the carrier element 2.
  • One of the suspension means 8 belongs to the lower temperature control body arrangement 1a.
  • the other of the suspension means 8 belongs to the upper temperature control body arrangement 1b.
  • the fourth exemplary embodiment of the temperature control body arrangement 1 according to the invention shown allows, in the first place, the drying and heating of one or more towels H1, H2 when the electric heating element EE is switched on .
  • it can be used similarly to the first exemplary embodiment for heating the room air.
  • a fan 9 (see Fig. 1 , Fig. 2 , Fig. 3 ) An additional generated convection of the air through the housing 2, 3 from bottom to top can be provided.
  • a fan 9 (see FIG Fig. 1 , Fig. 2 , Fig. 3 ) forced convection of the air through the housing 2, 3 is provided from top to bottom.
  • the cover element 4 can be attached to the carrier element 2 by means of articulated elements with respect to the frame element 3 about a vertical axis or about a horizontal axis on a part of the Frame element 3 can be rotatably arranged.
  • the cover element 4 is thus always movable between a first position in which the cover element 4 covers the opening 7 of the housing 2, 3 and a second position in which the cover element 4 does not cover the opening 7 of the housing 2, 3.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Thermal Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Textile Engineering (AREA)
  • Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Central Heating Systems (AREA)
  • Devices For Blowing Cold Air, Devices For Blowing Warm Air, And Means For Preventing Water Condensation In Air Conditioning Units (AREA)
  • Drying Of Solid Materials (AREA)
  • Control Of Temperature (AREA)

Description

Die Erfindung bezieht sich auf eine Temperierkörper-Anordnung sowie auf eine Vorwand-Anordnung mit einer solchen Temperierkörper-Anordnung.The invention relates to a temperature control body arrangement and to a pretext arrangement with such a temperature control body arrangement.

Eine derartige Temperierkörper-Anordnung ist beispielsweise in US 4 927 995 A oder US 2010/0206862 A1 beschrieben.Such a temperature control arrangement is for example in US 4 927 995 A. or US 2010/0206862 A1 described.

Temperierkörper zum Heizen oder Kühlen sind bekannt. Es gibt z.B. elektrische Varianten, bei denen der Temperierkörper elektrisch (resistiv) aufgeheizt oder (thermoelektrisch) gekühlt wird. Andererseits gibt es hydronische Varianten, bei denen der Temperierkörper von einem Wärmeträgerfluid durchströmt wird, dessen Temperatur je nach Bedarf (Heizen oder Kühlen) ausreichend hoch über oder ausreichend tief unter der Umgebungstemperatur liegt. Es sind auch derartige Temperierkörper mit einem Abdeckelement bekannt.Temperature control bodies for heating or cooling are known. There are e.g. electrical variants in which the temperature control body is electrically (resistively) heated or (thermoelectrically) cooled. On the other hand, there are hydronic variants in which a heat transfer fluid flows through the temperature control body, the temperature of which, depending on requirements (heating or cooling), is sufficiently high above or sufficiently low below the ambient temperature. Such temperature control bodies with a cover element are also known.

Bei den üblichen Temperierkörper-Anordnungen ist es kaum möglich, diese wirkungsvoll sowohl als reine Temperierkörper zum Heizen oder Kühlen eines Raumes, wie z.B. eines Badezimmers, als auch zum Heizen oder Kühlen eines z.B. unmittelbar am Temperierkörper angebrachten Handtuchs zu verwenden.With the usual temperature control element arrangements, it is hardly possible to use it effectively as a pure temperature control element for heating or cooling a room, e.g. a bathroom, as well as for heating or cooling e.g. to be used directly on the towel.

Der Erfindung liegt die Aufgabe zugrunde, eine Temperierkörper-Anordnung bereitzustellen, welche sowohl das Temperieren eines gesamten Raumes als auch das intensive Temperieren eines Gegenstands wirkungsvoll ermöglicht.The object of the invention is to provide a temperature control body arrangement which effectively enables both the temperature control of an entire room and the intensive temperature control of an object.

Zur Lösung dieser Aufgabe stellt die Erfindung eine Temperierkörper-Anordnung gemäß der technischen Lehre des Anspruchs 1 bereit.To achieve this object, the invention provides a temperature control body arrangement according to the technical teaching of claim 1.

Dies ermöglicht es, den zu temperierenden Gegenstand in dem Gehäuse in unmittelbarer Nähe an dem Temperierkörper zu platzieren, so dass der Gegenstand eine intensive Temperierung erfährt. Gleichzeitig erfolgt eine Temperierung des gesamten Raumes, in welchem sich die erfindungsgemässe Temperier-Anordnung befindet. Der intensiv zu temperierende Gegenstand ist z.B. ein Badehandtuch. Der zu temperierende Raum ist z.B. ein Badezimmer.This makes it possible to place the object to be temperature-controlled in the housing in the immediate vicinity of the temperature control body, so that the object experiences intensive temperature control. At the same time, the entire room in which the inventive tempering arrangement is located is tempered located. The object to be heated intensively is, for example, a bath towel. The room to be tempered is, for example, a bathroom.

Wenn das Abdeckelement die Öffnung des Gehäuses abdeckt, bildet sich im Innern des Gehäuses aufgrund der dort eingeschränkten Luftkonvektion und des dort herrschenden Strahlungsgleichgewichts zwischen den Oberflächen des (z.B. hydronisch) temperierten Rohrregisters und den das Gehäuse definierenden Oberflächen des Trägerelements, des Rahmenelements und des Abdeckelements eine Hohlraum-Lufttemperatur, die näher bei der Oberflächentemperatur des temperierten Rohrregisters liegt als die Lufttemperatur des temperierten Raumes ausserhalb des Gehäuses der Temperier-Anordnung. Das Abdeckelement an sich und insbesondere die dem Hohlraum des Gehäuses zugewandte Innenfläche des Abdeckelements sind hierbei von besonderer Bedeutung.If the cover element covers the opening of the housing, one forms in the interior of the housing due to the restricted air convection and the radiation balance prevailing there between the surfaces of the (e.g. hydronic) temperature-controlled pipe register and the surfaces of the support element, the frame element and the cover element that define the housing Cavity air temperature, which is closer to the surface temperature of the temperature-controlled pipe register than the air temperature of the temperature-controlled room outside the housing of the temperature control arrangement. The cover element per se and in particular the inner surface of the cover element facing the cavity of the housing are of particular importance here.

Wenn das Abdeckelement die Öffnung des Gehäuses nicht abdeckt, bildet sich im Innern des geöffneten Gehäuses aufgrund der nun stärkeren Luftkonvektion und des neuen Strahlungsgleichgewichts eine Hohlraum-Lufttemperatur, die nun weniger nah bei der Oberflächentemperatur des temperierten Rohrregisters liegt und somit näher bei der Lufttemperatur des temperierten Raumes ausserhalb des Gehäuses der Temperier-Anordnung liegt.If the cover element does not cover the opening of the housing, a cavity air temperature is formed inside the opened housing due to the now stronger air convection and the new radiation equilibrium, which is now less close to the surface temperature of the temperature-controlled pipe register and thus closer to the air temperature of the temperature-controlled one Space outside the housing of the temperature control arrangement.

Der mindestens eine Temperierkörper umfasst erfindungsgemäß ein von einem Wärmeträgerfluid durchströmbares Rohrregister mit einer Vorlaufleitung und einer Rücklaufleitung für das Wärmeträgerfluid.According to the invention, the at least one temperature control body comprises a tube register through which a heat transfer fluid can flow, with a feed line and a return line for the heat transfer fluid.

Alternativ oder ergänzend kann der mindestens eine Temperierkörper ein von elektrischem Strom durchströmbares Heizelement oder Kühlelement mit einer Zuleitung und einer Ableitung für den elektrischen Strom sein.Alternatively or in addition, the at least one temperature control body can be a heating element or cooling element through which electrical current can flow, with a supply line and a discharge line for the electrical current.

Insbesondere kann der Temperierkörper ein resistives Heizelement, ein thermoelektrisches Kühlelement oder ein mit Wasser oder Öl gefüllter Heizkörper mit elektrischer Heizpatrone sein.In particular, the temperature control element can be a resistive heating element, a thermoelectric cooling element or a heating element filled with water or oil with an electrical heating cartridge.

Erfindungsgemäß enthält die Temperierkörper-Anordnung mindestens ein Aufhängungsmittel im Innern des Gehäuses. An dem Aufhängungsmittel können intensiv zu temperierende Gegenstände wie z.B. ein Handtuch, ein Kleidungsstück, Schuhe, etc. im Innern des Gehäuses aufgehängt werden. Im aufgehängten Zustand ist eine besonders grosse Oberfläche eines zu temperierenden Gegenstands der Hohlraum-Lufttemperatur und der Strahlung im Innern des Gehäuses ausgesetzt, so dass eine intensive und rasche Temperierung des Gegenstands durch Wärmeleitung, Luftkonvektion und Wärmestrahlung erfolgen kann.According to the invention, the temperature control body arrangement contains at least one suspension means in the interior of the housing. Objects to be tempered intensively, such as a towel, a piece of clothing, shoes, etc., can be hung on the suspension means in the interior of the housing. When hung up A particularly large surface of an object to be tempered is exposed to the cavity air temperature and the radiation inside the housing, so that the object can be heated intensively and quickly by heat conduction, air convection and heat radiation.

Vorzugsweise ist in der ersten Stellung, in welcher das Abdeckelement eine Öffnung des Gehäuses abdeckt, diese Öffnung nicht vollständig verschlossen, so dass auch im Innern des Gehäuses eine ausreichende natürliche oder erzwungene Konvektion der Luft erfolgen kann.In the first position, in which the cover element covers an opening of the housing, this opening is preferably not completely closed, so that sufficient natural or forced convection of the air can also take place inside the housing.

Das Trägerelement und das Rahmenelement können miteinander starr verbunden sein, was zur Stabilisierung des Gehäuses und somit der ganzen Temperierkörper-Anordnung beiträgt.The carrier element and the frame element can be rigidly connected to one another, which contributes to the stabilization of the housing and thus the entire temperature control arrangement.

Vorzugsweise ist der mindestens eine Temperierkörper in dem Gehäuse angeordnet. Dies ermöglicht einen intensiven thermischen Austausch zwischen dem Temperierkörper und dem Hohlraum des Gehäuses.The at least one temperature control body is preferably arranged in the housing. This enables an intensive thermal exchange between the temperature control body and the cavity of the housing.

Besonders vorteilhaft ist es dabei, wenn der mindestens eine Temperierkörper mittels des Gehäuses von der Umgebung der Temperierkörper-Anordnung thermisch entkoppelt ist. Hierfür können das Trägerelement und Rahmenelement des Gehäuses thermisch isolierende Schichten aufweisen. Besonders vorteilhaft ist ein schichtartiger Aufbau mit einer thermisch (und elektrisch) schlecht leitenden Isolationsschicht im Innern des Trägerelements und/oder des Rahmenelements und einer thermisch (und elektrisch) gut leitenden Reflexionsschicht an der dem Gehäuse-Hohlraum zugewandten Oberfläche des Trägerelements und/oder des Rahmenelements.It is particularly advantageous if the at least one temperature control body is thermally decoupled from the surroundings of the temperature control body arrangement by means of the housing. For this purpose, the carrier element and frame element of the housing can have thermally insulating layers. A layer-like structure with a thermally (and electrically) poorly conductive insulation layer in the interior of the carrier element and / or the frame element and a thermally (and electrically) highly conductive reflection layer on the surface of the carrier element and / or the frame element facing the housing cavity is particularly advantageous .

Temperierkörper mittels einer Wärmeleitpaste oder einer wärmeleitenden Klebemasse mit dem Abdeckelement thermisch leitend verbunden sein. Der mindestens eine Temperierkörper kann an einer Oberfläche des Abdeckelements oder in das Abdeckelement, z.B. zwischen zwei Glasscheiben, eingebettet angeordnet sein. Als wärmeleitende Klebemasse kann eine Klebemasse, z.B. eine Graphit/Wasserglas-Masse, verwendet werden.Temperature control body by means of a heat-conducting paste or a heat-conducting adhesive with the cover element to be thermally conductively connected. The at least one temperature control body can be on a surface of the cover element or in the cover element, e.g. be embedded between two panes of glass. As a heat-conducting adhesive, an adhesive, e.g. a graphite / water glass mass can be used.

Vorzugsweise ist der mindestens eine Temperierkörper an der dem Gehäuse zugewandten Seite des Abdeckelements angeordnet. Dies trägt ebenfalls zur thermischen Entkopplung des mindestens einen Temperierkörpers von der Umgebung der Temperierkörper-Anordnung bei.The at least one temperature control body is preferably arranged on the side of the cover element facing the housing. This also contributes to the thermal decoupling of the at least one temperature control body from the surroundings of the temperature control body arrangement.

Bei einer besonders vorteilhaften Ausgestaltung der Temperierkörper-Anordnung ist im Innern des Gehäuses ein Ventilator angeordnet. Der Ventilator kann im unteren Bereich oder oberen Bereich des Gehäuses angeordnet sein. Damit kann je nach Bedarf ergänzend oder entgegengesetzt zu der durch die Schwerkraft getriebenen "natürlichen" Konvektion eine erzwungene Konvektion (Zwangskonvektion) sowohl im Innern des Gehäuses als auch in dem die Temperierkörper-Anordnung umgebenden Raum erzeugt werden. Insbesondere kann bei dieser Ausgestaltung eine Luftströmung erzeugt werden, die über ein in dem Gehäuse aufgehängtes Handtuch gelenkt wird.In a particularly advantageous embodiment of the temperature control body arrangement, a fan is arranged in the interior of the housing. The fan can be arranged in the lower area or upper area of the housing. Thus, as required, in addition to or contrary to the "natural" convection driven by gravity, forced convection (forced convection) can be generated both inside the housing and in the space surrounding the temperature control body arrangement. In particular, in this configuration an air flow can be generated which is directed over a towel suspended in the housing.

Dabei ist es besonders vorteilhaft, wenn das Gehäuse neben der erwähnten grossen Gehäuseöffnung mindestens eine weitere Öffnung aufweist. Vorzugsweise sind zwei weitere Öffnungen vorgesehen, wovon eine wahlweise verschliessbar ist.It is particularly advantageous if the housing has at least one further opening in addition to the large housing opening mentioned. Two further openings are preferably provided, one of which can optionally be closed.

Bei einer weiteren besonders vorteilhaften Ausgestaltung der Temperierkörper-Anordnung liegt zwischen dem Abdeckelement und dem Gehäuse ein Spalt vor, (auch) wenn das Abdeckelement in seiner die Öffnung des Gehäuses abdeckenden ersten Stellung ist. Somit ist in der ersten Stellung, in welcher das Abdeckelement die Öffnung des Gehäuses abdeckt, diese Öffnung nicht vollständig verschlossen.In a further particularly advantageous embodiment of the temperature control body arrangement, there is a gap between the cover element and the housing, (also) when the cover element is in its first position covering the opening of the housing. Thus, in the first position, in which the cover element covers the opening of the housing, this opening is not completely closed.

Besonders vorteilhaft ist es, wenn auch das Abdeckelement mindestens eine Öffnung hat. Vorzugsweise sind auch hier zwei weitere Öffnungen vorgesehen, wovon eine wahlweise verschliessbar ist.It is particularly advantageous if the cover element also has at least one opening. Preferably, two further openings are also provided here, one of which can optionally be closed.

Der Ventilator zusammen mit dem Spalt zwischen dem Abdeckelement und dem Gehäuse sowie die diversen optionalen weiteren Öffnungen ermöglichen eine bedarfsgerechte Einstellung des Luft-Konvektionsstroms innerhalb und ausserhalb der Temperierkörper-Anordnung und insbesondere eine wirkungsvolle Trocknung/Erwärmung eines in dem Gehäuse aufgehängten Handtuchs.The fan together with the gap between the cover element and the housing as well as the various optional further openings enable the air convection current to be adjusted as required within and outside the temperature control body arrangement and in particular an effective drying / heating of a towel suspended in the housing.

Die Temperierkörper-Anordnung kann zusätzlich einen Wasserzufuhr-Anschluss zur Befeuchtung des Innern des Gehäuses aufweisen und/oder einen Wasserabfuhr-Anschluss zur Entfeuchtung des Innern des Gehäuses aufweisen. Somit kann zusätzlich zur Temperierung (Erwärmung, Abkühlung) eines in dem Gehäuse platzierten Gegenstandes auch eine Trocknung/Entfeuchtung bzw. eine Nässung/Befeuchtung dieses Gegenstands erfolgen. Vor allem ermöglicht eine solche Temperier-Anordnung mit Wasserzufuhr und/oder Wasserabfuhr auch die Befeuchtung und/oder Entfeuchtung des Raumes, in welchem sich die Temperier-Anordnung befindet.The temperature control body arrangement can additionally have a water supply connection for moistening the interior of the housing and / or a water discharge connection for dehumidifying the interior of the housing. Thus, in addition to tempering (heating, cooling) an object placed in the housing, drying / dehumidification or wetting / moistening of this object can also take place. Above all, such a temperature control arrangement with water supply and / or water drainage also enables the humidification and / or dehumidification of the room in which the temperature control arrangement is located.

Die Temperierkörper-Anordnung kann ein elektrisches Heizelement aufweisen. Damit können kurzfristige Bedarfsspitzen, insbesondere beim Heizen/Trocknen, bedient werden. Vorzugsweise ist das elektrische Heizelement dabei dem Ventilator zugeordnet.The temperature control body arrangement can have an electrical heating element. This allows short-term peaks in demand, in particular for heating / drying, to be served. The electric heating element is preferably assigned to the fan.

Bei einer weiteren besonders vorteilhaften Ausgestaltung der Temperierkörper-Anordnung ist das mindestens eine Rohrregister aus Polymermaterial gebildet. Dadurch werden im Befeuchtungsfall, z.B. beim Verdampfen von gesprühtem und/oder zerstäubtem Wasser an einem heissen Rohrregister, oder im Entfeuchtungsfall, z.B. beim Kondensieren von Wasserdampf aus der Luft an einem kalten Rohrregister, Korrosionsprobleme am Register vermieden.In a further particularly advantageous embodiment of the temperature control body arrangement, the at least one tube register is formed from polymer material. This prevents corrosion problems on the register in the event of humidification, for example when evaporating sprayed and / or atomized water on a hot pipe register, or in the case of dehumidification, for example when condensing water vapor from the air on a cold pipe register.

Gemäss einer weiteren besonders vorteilhaften Ausführung ist die erfindungsgemässe Temperierkörper-Anordnung in ein Möbelstück, wie z.B. eine Schrankwand, oder in eine Zwischenwand bzw. einen Raumteiler integriert.According to a further particularly advantageous embodiment, the temperature control body arrangement according to the invention is in a piece of furniture, such as a wall unit, or integrated into an intermediate wall or a room divider.

Zweckmässigerweise enthält die erfindungsgemässe Temperierkörper-Anordnung mindestens einen zusätzlichen Stauraum, der neben dem Gehäuse der Temperierkörper-Anordnung angeordnet ist. Vorzugsweise ist der mindestens eine Stauraum von dem Gehäuse der Temperierkörper-Anordnung durch eine Zwischenwand getrennt. Die Zwischenwand enthält vorzugsweise Öffnungen, die einen Luftaustausch zwischen dem mindestens einen zusätzlichen Stauraum und dem Innern des Gehäuses der Temperierkörper-Anordnung ermöglichen.The temperature control body arrangement according to the invention expediently contains at least one additional storage space which is arranged next to the housing of the temperature control body arrangement. The at least one storage space is preferably separated from the housing of the temperature control body arrangement by an intermediate wall. The intermediate wall preferably contains openings which allow an air exchange between the at least one additional storage space and the interior of the housing of the temperature control body arrangement.

Vorzugsweise enthält die erfindungsgemässe Temperierkörper-Anordnung einen seitlichen Stauraum, der neben dem Gehäuse der Temperierkörper-Anordnung angeordnet ist, und/oder einen oberen Stauraum, der über dem Gehäuse der Temperierkörper-Anordnung angeordnet ist.The temperature control body arrangement according to the invention preferably contains a lateral storage space which is arranged next to the housing of the temperature control body arrangement and / or an upper storage space which is arranged above the housing of the temperature control body arrangement.

Zweckmässigerweise hat das Abdeckelement eine Lichtfunktion. Vorzugsweise enthält das Abdeckelement eine passive Lichtfunktion und/oder eine aktive Lichtfunktion. Vorzugsweise wird die passive Lichtfunktion dadurch gebildet, dass das Abdeckelement zumindest in Teilbereichen lichtleitend und/oder lichtstreuend ist. Vorzugsweise wird die aktive Lichtfunktion durch mindestens eine Lichtquelle gebildet, die dem Abdeckelement zugeordnet ist, wobei die mindestens eine Lichtquelle vorzugsweise in dem Abdeckelement oder an dem Abdeckelement angeordnet ist. Das von der mindestens einen Lichtquelle erzeugte Licht wird in den lichtleitenden und/oder lichtstreuenden Teilbereich des Abdeckelements eingekoppelt. Das so eingekoppelte Licht kann in dem Teilbereich weitergeleitet und/oder gestreut werden. Dadurch kann eine diffuse indirekte Beleuchtung der Umgebung des Abdeckelements erzielt werden.The cover element expediently has a light function. The cover element preferably contains a passive light function and / or an active light function. The passive light function is preferably formed in that the cover element is light-conducting and / or light-scattering at least in partial areas. The active light function is preferably formed by at least one light source which is assigned to the cover element, the at least one light source preferably being arranged in the cover element or on the cover element. The light generated by the at least one light source is coupled into the light-guiding and / or light-scattering partial area of the cover element. The light thus coupled in can be passed on and / or scattered in the partial area. Diffuse indirect lighting of the surroundings of the cover element can thereby be achieved.

Die Erfindung betrifft auch eine Vorwand-Anordnung, in welche eine Temperierkörper-Anordnung gemäss der oben stehenden Beschreibung integriert ist.The invention also relates to a pretext arrangement in which a temperature control arrangement according to the description above is integrated.

Vorzugsweise liegt zwischen dem Abdeckelement der Temperierkörper-Anordnung und der Vorwand ein Spalt vor.There is preferably a gap between the cover element of the temperature control body arrangement and the pretext.

Das Abdeckelement und die Vorwand können fluchtend/bündig angeordnet sein.The cover element and the pretext can be arranged flush / flush.

Alternativ können das Abdeckelement und ggfs. ein Teil des Gehäuses oder das ganze Gehäuse aus der Vorwand herausragen.Alternatively, the cover element and possibly a part of the housing or the entire housing protrude from the front wall.

Weitere Vorteile, Merkmale und Anwendungsmöglichkeiten der Erfindung ergeben sich aus der nun folgenden, nicht einschränkend aufzufassenden Beschreibung von Ausführungsbeispielen der Erfindung anhand der Zeichnung, wobei

  • Fig. 1 eine entlang einer vertikalen Ebene teilweise geschnittene Seitenansicht eines ersten Ausführungsbeispiels einer nicht dem Anspruch 1 unterfallenden Temperierkörper-Anordnung zeigt;
  • Fig. 2 eine entlang einer vertikalen Ebene teilweise geschnittene Seitenansicht eines zweiten Ausführungsbeispiels der erfindungsgemässen Temperierkörper-Anordnung zeigt;
  • Fig. 3 eine entlang einer vertikalen Ebene teilweise geschnittene Seitenansicht eines dritten Ausführungsbeispiels der erfindungsgemässen Temperierkörper-Anordnung zeigt;
  • Fig. 4 eine schematische Vorderansicht (Frontansicht) der erfindungsgemässen Temperierkörper-Anordnung von Fig. 1, Fig. 2 und Fig. 3 zeigt;
  • Fig. 5A eine entlang einer vertikalen Ebene geschnittene Seitenansicht eines vierten Ausführungsbeispiels der erfindungsgemässen Temperierkörper-Anordnung zeigt;
  • Fig. 5B eine erste Perspektivansicht des vierten Ausführungsbeispiels der erfindungsgemässen Temperierkörper-Anordnung zeigt; und
  • Fig. 5C eine zweite Perspektivansicht des vierten Ausführungsbeispiels der erfindungsgemässen Temperierkörper-Anordnung zeigt.
Further advantages, features and possible uses of the invention result from the following description of exemplary embodiments of the invention, which is to be understood as non-restrictive, with reference to the drawing, in which:
  • Fig. 1 a side view, partly in section along a vertical plane, of a first exemplary embodiment of a temperature control body arrangement not falling under claim 1;
  • Fig. 2 shows a side view, partly in section along a vertical plane, of a second exemplary embodiment of the temperature control body arrangement according to the invention;
  • Fig. 3 shows a side view, partly in section along a vertical plane, of a third exemplary embodiment of the temperature control body arrangement according to the invention;
  • Fig. 4 is a schematic front view (front view) of the inventive tempering body arrangement of Fig. 1 , Fig. 2 and Fig. 3 shows;
  • Figure 5A a side view cut along a vertical plane of a fourth embodiment of the inventive tempering body arrangement;
  • Figure 5B shows a first perspective view of the fourth embodiment of the temperature control body arrangement according to the invention; and
  • Figure 5C shows a second perspective view of the fourth embodiment of the temperature control body arrangement according to the invention.

In Fig. 1 ist eine Temperierkörper-Anordnung 1 gezeigt. Die Temperierkörper-Anordnung 1 ist auf einem Boden B und an einer Wand W angeordnet. Sie enthält ein Trägerelement 2, ein Rahmenelement 3, ein Abdeckelement 4 sowie ein von einem Wärmeträgerfluid durchströmbares Registerpaket RR und ein von einem elektrischen Strom durchströmbares elektrisches Heizelement EE.In Fig. 1 A temperature control body arrangement 1 is shown. The temperature control body arrangement 1 is arranged on a floor B and on a wall W. It contains a carrier element 2, a frame element 3, a cover element 4 as well as a register packet RR through which a heat transfer fluid flows and an electrical heating element EE through which an electrical current can flow.

Das Trägerelement 2 ist ein plattenartiges Gebilde, das an der Wand W anliegt oder sich mit einem Spalt zwischen der Wand und dem Trägerelement 2 parallel zur Wand W erstreckt. Das Trägerelement 2 und das Rahmenelement 3 bilden zusammen ein Gehäuse 2, 3, welches das Registerpaket RR umgibt. Von dem Rahmenelement 3 erkennt man im Vertikalschnitt einen oberen Teil und einen unteren Teil. Das Trägerelement 2 und das Rahmenelement 3 sind miteinander starr verbunden.The carrier element 2 is a plate-like structure which bears against the wall W or extends parallel to the wall W with a gap between the wall and the carrier element 2. The carrier element 2 and the frame element 3 together form a housing 2, 3 which surrounds the register package RR. An upper part and a lower part of the frame element 3 can be seen in vertical section. The carrier element 2 and the frame element 3 are rigidly connected to one another.

Das Registerpaket RR ist aus sechs Rohrregistern RR1, RR2, RR3, RR4, RR5, RR6 zusammengesetzt. Die Enden der Verteilerrohre VR der einzelnen Rohrregister RR1, RR2, RR3, RR4, RR5, RR6 sind mittels Rohrregister-Endstücken RE miteinander derart verbunden, dass die Verteilerrohre VR miteinander in Fluidverbindung stehen. Dabei können die einzelnen Rohregister RR1, RR2, RR3, RR4, RR5, RR6 fluidtechnisch in Serie und/oder parallel zueinander geschaltet sein. Insbesondere können einige der Rohrregister RR1, RR2, RR3, RR4, RR5, RR6 in Serie geschaltet sein und einige weitere der Rohrregister RR1, RR2, RR3, RR4, RR5, RR6 parallel geschaltet sein.The register packet RR is composed of six pipe registers RR1, RR2, RR3, RR4, RR5, RR6. The ends of the distributor pipes VR of the individual pipe registers RR1, RR2, RR3, RR4, RR5, RR6 are connected to one another by means of pipe register end pieces RE in such a way that the distributor pipes VR are in fluid communication with one another. The individual raw registers RR1, RR2, RR3, RR4, RR5, RR6 can be connected in series and / or in parallel with one another in terms of fluid technology. In particular, some of the pipe registers RR1, RR2, RR3, RR4, RR5, RR6 can be connected in series and some more of the pipe registers RR1, RR2, RR3, RR4, RR5, RR6 can be connected in parallel.

Das Registerpaket RR ist mittels in der Figur nicht dargestellter flexibler Leitungen, wie z.B. Panzerschläuchen, mit einer Vorlaufleitung und einer Rücklaufleitung für das Wärmeträgerfluid verbunden. Die Vorlaufleitung und die Rücklaufleitung sind in einer kanalförmigen Zuleitung 5 bzw. einer kanalförmigen Ableitung 6 jeweils unterhalb des unteren Teils des Rahmenelements 3 angeordnet.The register packet RR is by means of flexible lines, not shown in the figure, such as e.g. Armored hoses, connected to a flow line and a return line for the heat transfer fluid. The flow line and the return line are arranged in a channel-shaped feed line 5 and a channel-shaped discharge line 6, respectively below the lower part of the frame element 3.

Das Abdeckelement 4 ist bezüglich des Trägerelements 2 mittels in der Figur nicht dargestellter Gelenkelemente bezüglich des Rahmenelements 3 um eine horizontale Achse A am unteren Teil des Rahmenelements 3 verdrehbar angeordnet. Das Abdeckelement ist somit bewegbar zwischen einer vertikalen ersten Stellung S1, in welcher das Abdeckelement 4 eine Öffnung 7 des Gehäuses 2, 3 abdeckt, und einer schrägen zweiten Stellung S2, in welcher das Abdeckelement 4 die Öffnung 7 des Gehäuses 2, 3 nicht abdeckt.The cover element 4 is rotatably arranged with respect to the carrier element 2 by means of articulation elements (not shown in the figure) with respect to the frame element 3 about a horizontal axis A on the lower part of the frame element 3. The cover element is thus movable between a vertical first position S1, in which the cover element 4 covers an opening 7 of the housing 2, 3, and an oblique second position S2, in which the cover element 4 does not cover the opening 7 of the housing 2, 3.

Alternativ kann das Abdeckelement 4 bezüglich des Trägerelements 2 mittels in der Figur nicht dargestellter Gelenkelemente bezüglich des Rahmenelements 3 um eine vertikale Achse an einem seitlichen Teil des Rahmenelements 3 verdrehbar angeordnet sein. Das Abdeckelement 4 ist somit ebenfalls bewegbar zwischen einer ersten Stellung, in welcher das Abdeckelement 4 die Öffnung 7 des Gehäuses 2, 3 abdeckt, und einer zweiten Stellung, in welcher das Abdeckelement 4 die Öffnung 7 des Gehäuses 2, 3 nicht abdeckt.As an alternative, the cover element 4 can be arranged rotatably about a vertical axis on a lateral part of the frame element 3 with respect to the carrier element 2 by means of joint elements (not shown in the figure) with respect to the frame element 3. The cover element 4 can thus also be moved between a first position in which the cover element 4 has the opening 7 of the housing 2, 3 covers, and a second position in which the cover element 4 does not cover the opening 7 of the housing 2, 3.

Das elektrische Heizelement EE ist an der dem Gehäuse 2, 3 zugewandten Seite des Abdeckelements 4 angeordnet und mittels in der Figur nicht dargestellter flexibler Stromleitungen an eine Stromquelle angeschlossen. Dies führt dazu, dass an der Innenseite 4a des Abdeckelements 4 bei eingeschaltetem Heizelement EE eine grössere Oberflächentemperatur herrscht als an der Aussenseite 4b des Abdeckelements 4. Die Stromleitung(en) für die Stromzufuhr und Stromabfuhr sind ebenfalls in der kanalförmigen Zuleitung 5 bzw. der kanalförmigen Ableitung 6 jeweils unterhalb des unteren Teils des Rahmenelements 3 angeordnet.The electric heating element EE is arranged on the side of the cover element 4 facing the housing 2, 3 and is connected to a power source by means of flexible power lines (not shown in the figure). This leads to the fact that on the inside 4a of the cover element 4, when the heating element EE is switched on, there is a greater surface temperature than on the outside 4b of the cover element 4. The power line (s) for the power supply and current drain are also in the channel-shaped supply line 5 or the channel-shaped Derivation 6 each arranged below the lower part of the frame element 3.

Das im Innern des Gehäuses 2, 3 angeordnete Registerpaket RR ist mittels des Gehäuses 2, 3 und mittels des Abdeckelements 4 in seiner vertikalen ersten Stellung S1 von der Umgebung der Temperierkörper-Anordnung 1 thermisch entkoppelt. Bei eingeschaltetem Registerpaket RR mit warmem Wärmeträgerfluid und/oder eingeschaltetem elektrisch-resistivem Heizelement EE ist daher die Temperatur im Innern des Gehäuses 2, 3 höher als ausserhalb des Gehäuses 2, 3.The register packet RR arranged in the interior of the housing 2, 3 is thermally decoupled from the surroundings of the temperature control body arrangement 1 by means of the housing 2, 3 and by means of the cover element 4 in its vertical first position S1. When the register package RR with warm heat transfer fluid and / or the electrically resistive heating element EE is switched on, the temperature inside the housing 2, 3 is therefore higher than outside the housing 2, 3.

Im Innern des Gehäuses 2, 3 ist eine horizontale Zwischenwand HZW vorgesehen, die sich im oberen Teil des Gehäuses 2, 3 quer zwischen dem Trägerelement 2 und dem Rahmenelement 3 erstreckt. Diese horizontale Zwischenwand HZW trennt das Innere des Gehäuses 2, 3 in eine obere Kammer K1, in welcher sich der Ventilator 9 befindet, und eine untere Kammer K2, in welcher sich das Registerpaket RR befindet. Die horizontale Zwischenwand HZW verhindert eine Kurzschluss-Strömung der aus dem Ventilator 9 austretenden Luft über die Öffnungen 12 und 13.A horizontal partition HZW is provided in the interior of the housing 2, 3 and extends transversely between the carrier element 2 and the frame element 3 in the upper part of the housing 2, 3. This horizontal partition wall HZW separates the inside of the housing 2, 3 into an upper chamber K1, in which the fan 9 is located, and a lower chamber K2, in which the register packet RR is located. The horizontal partition wall HZW prevents a short-circuit flow of the air emerging from the fan 9 through the openings 12 and 13.

Die Temperierkörper-Anordnung 1 enthält ausserdem einen Ventilator 9, der im Innern des Gehäuses 2, 3 im oberen Bereich und insbesondere oberhalb des Registerpakets RR angeordnet ist. Ein weiteres elektrisches Heizelement 17 ist am Luftaustritt des Ventilators 9 angeordnet.The temperature control body arrangement 1 also contains a fan 9 which is arranged in the interior of the housing 2, 3 in the upper region and in particular above the register package RR. Another electrical heating element 17 is arranged at the air outlet of the fan 9.

Die Temperierkörper-Anordnung 1 enthält oberhalb des Abdeckelements 4 ein Bedienfeld 19, an welchem mehrere Bedienelemente B1, B2, B3, B4, B5, B6 für die Bedienung des Registerpakets R, des elektrischen Heizelements EE, des Ventilators 19 sowie des weiteren elektrischen Heizelements 17 vorgesehen sind.The temperature control body arrangement 1 contains a control panel 19 above the cover element 4, on which a plurality of control elements B1, B2, B3, B4, B5, B6 for operating the register package R, the electrical heating element EE, the fan 19 and the further electrical heating element 17 are provided.

Wenn die von dem Rahmenelement 3 umgebene Öffnung 7 des Gehäuses 2, 3 bei hochgeschwenktem Abdeckelement 4 in seiner vertikalen ersten Stellung S1 abgedeckt ist, hat die Temperierkörper-Anordnung 1 weitere Öffnungen 11, 12, 13, 14 (siehe auch Fig. 4), die jeweils einen Luftdurchtritt und somit insgesamt eine Luftströmung durch das Gehäuse 2, 3 hindurch ermöglichen.If the opening 7 of the housing 2, 3 surrounded by the frame element 3 is covered in its vertical first position S1 when the cover element 4 is pivoted up, the temperature control body arrangement 1 has further openings 11, 12, 13, 14 (see also Fig. 4 ), each of which allows air to pass through and thus overall air flow through the housing 2, 3.

Am oberen Ende hat das Abdeckelement 4 an seinem oberen Rand eine mittig angeordnete trapezförmige Öffnung 11, die einerseits einen Luftdurchtritt ermöglicht und andererseits als Griff-Aussparung dient, an der man das obere Ende des Abdeckelements 4 ergreifen und dieses von seiner vertikalen ersten Stellung S1 in seine geneigte zweite Stellung S2 und wieder zurück bewegen kann.At the upper end, the cover element 4 has at its upper edge a centrally arranged trapezoidal opening 11, which on the one hand allows air to pass through and on the other hand serves as a handle recess where one can grasp the upper end of the cover element 4 and move it from its vertical first position S1 in can move its inclined second position S2 and back again.

Zwischen dem Bedienfeld 19 und dem Rahmenelement 3 befindet sich eine horizontale schlitzartige Öffnung 12. Bei hochgeschwenktem Abdeckelement 4 in seiner vertikalen ersten Stellung S1 und abgedeckter Öffnung 7 ist das Abdeckelement 4 von einem Spalt 13 umgeben. Der Spalt 13 erstreckt sich in seinem unteren horizontalen Bereich sowie in seinen beiden vertikalen Bereichen zwischen dem Rahmenelement 3 und dem Abdeckelement 4 und in seinem oberen horizontalen Bereich zwischen dem Bedienfeld 19 und dem Abdeckelement 4.There is a horizontal slot-like opening 12 between the control panel 19 and the frame element 3. When the cover element 4 is pivoted up in its vertical first position S1 and the opening 7 is covered, the cover element 4 is surrounded by a gap 13. The gap 13 extends in its lower horizontal area and in its two vertical areas between the frame element 3 and the cover element 4 and in its upper horizontal area between the control panel 19 and the cover element 4.

Die Lufteintrittsöffnung des Ventilators 9 befindet sich im Innern des Gehäuses 2, 3 hinter dem oberen horizontalen Bereich des Spalts 13, wobei sich die Mitte der Lufteintrittsöffnung des Ventilators 9 auf einer Höhe befindet, die zwischen der Höhe der schlitzartigen Öffnung 12 und der Höhe des oberen horizontalen Bereichs des Spalts 13 liegt.The air inlet opening of the fan 9 is located inside the housing 2, 3 behind the upper horizontal region of the gap 13, the center of the air inlet opening of the fan 9 being at a height between the height of the slot-like opening 12 and the height of the upper one horizontal region of the gap 13 lies.

Weitere optionale Öffnungen 14 sind im unteren Bereich des Abdeckelements 14 vorgesehen.Further optional openings 14 are provided in the lower region of the cover element 14.

Die Temperierkörper-Anordnung 1 enthält in ihrem Trägerelement 2 und/oder in ihrem Rahmenelement 3 angeordnete Wasserzufuhr-Anschlüsse 15 mit Sprühdüsen und/oder Zerstäubungsdüsen. Ausserdem enthält die Temperierkörper-Anordnung 1 im unteren Bereich ihres Rahmenelements 3 einen Wasserabfuhr-Anschluss 16 mit einer Wasser-Auffangpfanne 18. Die Wasserzufuhr-Anschlüsse 15 dienen zur Befeuchtung des Innern des Gehäuses 2, 3 und der Wasserabfuhr-Anschluss 16 zur Entfeuchtung des Innern des Gehäuses 2, 3. Das Registerpaket RR und die durch das elektrische Heizelement EE gebildete Oberfläche an der Innenseite 4a des Abdeckelements 4 sind aus Polymermaterial gebildet.The temperature control body arrangement 1 contains, in its support element 2 and / or in its frame element 3, water supply connections 15 with spray nozzles and / or atomizing nozzles. In addition, the temperature control body arrangement 1 contains, in the lower region of its frame element 3, a water discharge connection 16 with a water collecting pan 18. The water supply connections 15 serve to moisten the inside of the housing 2, 3 and the water discharge connection 16 to dehumidify the inside of the housing 2, 3. The register package RR and through the electrical heating element EE formed surface on the inside 4a of the cover member 4 are formed of polymer material.

Das in Fig. 1 gezeigte erste Ausführungsbeispiel der erfindungsgemässen Temperierkörper-Anordnung 1 ermöglicht einen sehr vielseitigen Betrieb zur Temperierung eines Raumes, an bzw. in dessen Wand die Temperierkörper-Anordnung 1 angeordnet ist. Sie kann einerseits zum Heizen oder Kühlen und andererseits zum Befeuchten oder Entfeuchten der Raumluft verwendet werden.This in Fig. 1 The first exemplary embodiment of the temperature control body arrangement 1 according to the invention shown enables very versatile operation for temperature control of a room, on or in the wall of which the temperature control body arrangement 1 is arranged. It can be used for heating or cooling on the one hand and for humidifying or dehumidifying the room air on the other.

Beim Heizen wird das Registerpaket RR mit warmem bis heissem Wasser durchströmt. Alternativ oder ergänzend wird dem elektrischen Heizelement EE elektrischer Strom zugeführt. Die durch das Registerpaket RR und/oder das elektrische Heizelement EE durch Strahlung und Wärmeleitung ins Innere des Gehäuses 2, 3 abgegebene Wärme führt zu einer Erhöhung der Temperatur im Innern des Gehäuses 2, 3, wodurch eine natürliche Konvektion über die beiden vertikalen Bereiche des Spalts 13 sowie über die optionalen Öffnungen 14 der Temperierkörper-Anordnung 1 in Gang gesetzt wird. Die im Gehäuse 2, 3 erwärmte Luft gelangt so über die oberen Öffnungen der Temperierkörper-Anordnung 1 in den Raum, wodurch die Raumluft erwärmt wird, und gelangt über die unteren Öffnungen der Temperierkörper-Anordnung 1 wieder zurück in das Gehäuse 2, 3.When heating , the register package RR is flowed through with warm to hot water. Alternatively or in addition, electrical current is supplied to the electrical heating element EE. The heat given off by the register packet RR and / or the electrical heating element EE by radiation and heat conduction into the interior of the housing 2, 3 leads to an increase in the temperature inside the housing 2, 3, which results in natural convection over the two vertical regions of the gap 13 and the optional openings 14 of the temperature control body arrangement 1 is set in motion. The air heated in the housing 2, 3 thus enters the room via the upper openings of the temperature control body arrangement 1, as a result of which the room air is heated, and returns to the housing 2, 3 via the lower openings of the temperature control body arrangement 1.

Bei Bedarf kann diese natürliche Konvektion durch den Ventilator 9 verstärkt oder umgekehrt werden. Der Ventilator 9 fördert hierfür die Luft im Gehäuse 2, 3 von unten nach oben (in Fig. 1 nicht gezeigt) oder von oben nach unten (in Fig. 1 gezeigt). Um die durch das Registerpaket RR und das elektrische Heizelement EE erzeugte Heizleistung noch zu verstärken, kann das weitere Heizelement 17 noch zusätzlich aktiviert werden, wodurch die durch den Ventilator 9 geförderte Luft noch weiter erwärmt wird.If necessary, this natural convection can be intensified by the fan 9 or vice versa. For this purpose, the fan 9 promotes the air in the housing 2, 3 from bottom to top (in Fig. 1 not shown) or from top to bottom (in Fig. 1 shown). In order to further increase the heating power generated by the register package RR and the electric heating element EE, the further heating element 17 can be additionally activated, as a result of which the air conveyed by the fan 9 is heated even further.

Beim Kühlen wird das Registerpaket RR mit kühlem bis kaltem Wasser durchströmt. Dem elektrischen Heizelement EE wird kein elektrischer Strom zugeführt. Die durch das Registerpaket RR durch Strahlung und Wärmeleitung im Innern des Gehäuses 2, 3 entzogene Wärme führt zu einer Absenkung der Temperatur im Innern des Gehäuses 2, 3, wodurch eine natürliche Konvektion über die beiden vertikalen Bereiche des Spalts 13 sowie über die optionalen Öffnungen 14 der Temperierkörper-Anordnung 1 in Gang gesetzt wird. Die im Gehäuse 2, 3 abgekühlte Luft gelangt so über die unteren Öffnungen der Temperierkörper-Anordnung 1 in den Raum, wodurch die Raumluft gekühlt wird, und gelangt über die oberen Öffnungen der Temperierkörper-Anordnung 1 wieder zurück in das Gehäuse 2, 3.When cooling , the register package RR is flowed through with cool to cold water. No electrical current is supplied to the electrical heating element EE. The heat extracted by the register packet RR due to radiation and heat conduction in the interior of the housing 2, 3 leads to a lowering of the temperature in the interior of the housing 2, 3, as a result of which natural convection via the two vertical regions of the gap 13 and via the optional openings 14 the temperature control body arrangement 1 is started. The cooled in the housing 2, 3 Air thus enters the room via the lower openings of the temperature control body arrangement 1, as a result of which the room air is cooled, and reaches the housing 2, 3 again via the upper openings of the temperature control body arrangement 1.

Bei Bedarf kann auch hier diese natürliche Konvektion durch den Ventilator 9 verstärkt oder umgekehrt werden. Der Ventilator 9 fördert hierfür die Luft im Gehäuse 2, 3 von oben nach unten (in Fig. 1 gezeigt) oder von unten nach oben (in Fig. 1 nicht gezeigt).If necessary, this natural convection can also be reinforced by the fan 9 or vice versa. For this purpose, the fan 9 promotes the air in the housing 2, 3 from top to bottom (in Fig. 1 shown) or from bottom to top (in Fig. 1 Not shown).

Beim Befeuchten der Luft wird das Registerpaket RR mit heissem Wasser durchströmt. Die Temperatur des heissen Wassers sollte möglichst weit über dem Taupunkt der Luft mit dem angestrebten Feuchtigkeitsgehalt liegen. Alternativ oder ergänzend wird dem elektrischen Heizelement EE elektrischer Strom zugeführt. Gleichzeitig wird über die in dem Trägerelement 2 und/oder in dem Rahmenelement 3 angeordneten Wasserzufuhr-Anschlüsse 15 über die Sprühdüsen und/oder Zerstäubungsdüsen Wasser ins Innere des Gehäuses 2, 3 abgegeben. Das in Form von Wassertröpfchen in der Luft oder als benetzender Wasserfilm auf dem Registerpaket RR und/oder auf dem elektrischen Heizelement EE in dem Gehäuse vorliegende Wasser wird durch die Heizleistung des Registerpakets RR und/oder des elektrischen Heizelements EE verdampft. Die durch das Registerpaket RR und/oder das elektrische Heizelement EE zusätzlich zur Verdampfungsleistung ins Innere des Gehäuses 2, 3 abgegebene Wärme führt auch hier zu einer Erhöhung der Temperatur der befeuchteten Luft im Innern des Gehäuses 2, 3, wodurch eine natürliche Konvektion über die Öffnungen 11, 12 und 13 sowie über die optionalen Öffnungen 14 der Temperierkörper-Anordnung 1 in Gang gesetzt wird. Die im Gehäuse 2, 3 erwärmte und befeuchtete Luft gelangt so über die oberen Öffnungen der Temperierkörper-Anordnung 1 in den Raum, wodurch die Raumluft erwärmt und befeuchtet wird, und gelangt über die unteren Öffnungen der Temperierkörper-Anordnung 1 wieder zurück in das Gehäuse 2, 3.When the air is humidified, hot water flows through the RR register package. The temperature of the hot water should be as high as possible above the dew point of the air with the desired moisture content. Alternatively or in addition, electrical current is supplied to the electrical heating element EE. At the same time, water is discharged into the interior of the housing 2, 3 via the water supply connections 15 arranged in the carrier element 2 and / or in the frame element 3 via the spray nozzles and / or atomizing nozzles. The water present in the form of water droplets in the air or as a wetting water film on the register package RR and / or on the electrical heating element EE in the housing is evaporated by the heating power of the register package RR and / or the electrical heating element EE. The heat emitted by the register package RR and / or the electric heating element EE in addition to the evaporation power inside the housing 2, 3 also leads to an increase in the temperature of the humidified air inside the housing 2, 3, which results in natural convection via the openings 11, 12 and 13 and the optional openings 14 of the temperature control body arrangement 1 is set in motion. The heated and humidified air in the housing 2, 3 thus enters the room via the upper openings of the temperature control body arrangement 1, as a result of which the room air is heated and humidified, and returns to the housing 2 via the lower openings of the temperature control body arrangement 1 , 3rd

Bei Bedarf kann diese natürliche Konvektion durch den Ventilator 9 verstärkt oder umgekehrt werden. Der Ventilator 9 fördert hierfür die erwärmte und befeuchtete Luft im Gehäuse 2, 3 von unten nach oben (in Fig. 1 nicht gezeigt) oder von oben nach unten (in Fig. 1 gezeigt). Um die durch das Registerpaket RR und das elektrische Heizelement EE erzeugte Heizleistung noch zu verstärken, kann auch hier das weitere Heizelement 17 zusätzlich aktiviert werden, wodurch die durch den Ventilator 9 geförderte Luft noch weiter erwärmt wird. Sollten in dem Luftstrom noch nicht verdampfte Wassertröpfchen vorhanden sein, werden diese an dem weiteren Heizelement 17 verdampft.If necessary, this natural convection can be intensified by the fan 9 or vice versa. The fan 9 promotes the heated and humidified air in the housing 2, 3 from bottom to top (in Fig. 1 not shown) or from top to bottom (in Fig. 1 shown). In order to further increase the heating power generated by the register package RR and the electrical heating element EE, the additional heating element 17 can also be activated here, as a result of which the fan 9 conveyed air is heated even further. If there are not yet evaporated water droplets in the air stream, these are evaporated on the further heating element 17.

Beim Entfeuchten der Luft wird das Registerpaket RR mit kaltem Wasser durchströmt. Die Temperatur des kalten Wassers sollte möglichst weit unter dem Taupunkt der Luft mit dem angestrebten Feuchtigkeitsgehalt liegen. Alternativ oder ergänzend wird dem thermoelektrischen Kühlelement EE elektrischer Strom zugeführt. Das durch die Kühlleistung des Registerpakets RR und/oder des thermoelektrischen Kühlelements EE in Form von Wassertröpfchen in der Luft oder als benetzender Wasserfilm auf dem Registerpaket RR und/oder auf dem thermoelektrischen Kühlelement EE in dem Gehäuse anfallende kondensierte Wasser gelangt durch die Wirkung der Schwerkraft über die Wasser-Auffangpfanne 18 im unteren Bereich des Rahmenelements 3 in den Wasserabfuhr-Anschluss 16 und wird abgeführt. Die durch das Registerpaket RR und/oder das thermoelektrische Kühlelement EE zusätzlich zur Kondensationsleistung dem Innern des Gehäuses 2, 3 entzogene Wärme führt zu einer Absenkung der Temperatur der entfeuchteten Luft im Innern des Gehäuses 2, 3, wodurch eine natürliche Konvektion über die beiden vertikalen Bereiche des Spalts 13 sowie über die optionalen Öffnungen 14 der Temperierkörper-Anordnung 1 in Gang gesetzt wird. Die im Gehäuse 2, 3 abgekühlte und entfeuchtete Luft gelangt so über die unteren Öffnungen der Temperierkörper-Anordnung 1 in den Raum, wodurch die Raumluft abgekühlt und entfeuchtet wird, und gelangt über die oberen Öffnungen der Temperierkörper-Anordnung 1 wieder zurück in das Gehäuse 2, 3.When the air is dehumidified, cold water flows through the RR register package. The temperature of the cold water should be as low as possible below the dew point of the air with the desired moisture content. Alternatively or in addition, electrical current is supplied to the thermoelectric cooling element EE. The condensed water resulting from the cooling capacity of the register package RR and / or the thermoelectric cooling element EE in the form of water droplets in the air or as a wetting water film on the register package RR and / or on the thermoelectric cooling element EE in the housing passes through the action of gravity the water collecting pan 18 in the lower region of the frame element 3 into the water drainage connection 16 and is discharged. The heat extracted from the interior of the housing 2, 3 by the register package RR and / or the thermoelectric cooling element EE in addition to the condensation power leads to a lowering of the temperature of the dehumidified air in the interior of the housing 2, 3, which results in natural convection over the two vertical areas the gap 13 and the optional openings 14 of the temperature control body arrangement 1 is set in motion. The air cooled and dehumidified in the housing 2, 3 thus enters the room through the lower openings of the temperature control body arrangement 1, as a result of which the room air is cooled and dehumidified, and returns to the housing 2 via the upper openings of the temperature control body arrangement 1 , 3rd

Bei Bedarf kann diese natürliche Konvektion durch den Ventilator 9 verstärkt oder umgekehrt werden. Der Ventilator 9 fördert hierfür die abgekühlte und entfeuchtete Luft im Gehäuse 2, 3 von oben nach unten (in Fig. 1 gezeigt) oder von unten nach oben (in Fig. 1 nicht gezeigt). Beim Entfeuchten, d.h. Kondensieren von Wasserdampf im Innern des Gehäuses 2, 3, bevorzugt man die in Fig. 1 dargestellte Verstärkung der natürlichen Konvektion durch den Ventilator. Dadurch werden im Innern des Gehäuses 2, 3 in der Luft schwebende Wassertröpfchen und der benetzende Wasserfilm auf dem Registerpaket RR (und/oder auf dem thermoelektrischen Kühlelement EE) nach unten geblasen, wodurch (ein Grossteil des Kondenswassers) das Kondenswasser letztendlich in die Wasserauffang-Pfanne 18 abtropft.If necessary, this natural convection can be intensified by the fan 9 or vice versa. For this purpose, the fan 9 conveys the cooled and dehumidified air in the housing 2, 3 from top to bottom (in Fig. 1 shown) or from bottom to top (in Fig. 1 Not shown). When dehumidifying, ie condensing water vapor inside the housing 2, 3, one prefers the in Fig. 1 reinforcement of natural convection shown by the fan. As a result, water droplets floating in the air and the wetting water film on the register packet RR (and / or on the thermoelectric cooling element EE) are blown downward in the interior of the housing 2, 3, whereby (a large part of the condensed water) the condensed water ultimately drips into the water collecting pan 18.

In Fig. 2 ist ein zweites Ausführungsbeispiel der erfindungsgemässen Temperierkörper-Anordnung 1 gezeigt. Die Temperierkörper-Anordnung 1 ist auf einem Boden B und an einer Wand W angeordnet. Sie enthält ein Trägerelement 2, ein Rahmenelement 3, ein Abdeckelement 4 sowie ein von einem Wärmeträgerfluid durchströmbares Registerpaket RR und ein von einem elektrischen Strom durchströmbares elektrisches Heizelement EE.In Fig. 2 A second exemplary embodiment of the temperature control body arrangement 1 according to the invention is shown. The temperature control body arrangement 1 is arranged on a floor B and on a wall W. It contains a carrier element 2, a frame element 3, a cover element 4 as well as a register packet RR through which a heat transfer fluid flows and an electrical heating element EE through which an electrical current can flow.

Der Aufbau des zweiten Ausführungsbeispiels stimmt in weiten Teilen mit dem Aufbau des ersten Ausführungsbeispiels überein. Sämtliche Elemente des in Fig. 2 gezeigten zweiten Ausführungsbeispiels, die denen des in Fig. 1 gezeigten ersten Ausführungsbeispiels 1 entsprechen, tragen in Fig. 2 dieselben Bezugszeichen wie in Fig. 1.The structure of the second exemplary embodiment largely corresponds to the structure of the first exemplary embodiment. All elements of the in Fig. 2 shown second embodiment, that of the in Fig. 1 shown first embodiment 1, in Fig. 2 the same reference numerals as in Fig. 1 .

Das zweite Ausführungsbeispiel unterscheidet sich von dem ersten Ausführungsbeispiel erstens dadurch, dass das Registerpaket RR nur aus vier Registern RR1, RR2, RR3, RR4 zusammengesetzt ist und dadurch weniger dick als das Registerpaket RR von Fig. 1 ist.The second exemplary embodiment differs from the first exemplary embodiment in that the register packet RR is only composed of four registers RR1, RR2, RR3, RR4 and is therefore less thick than the register packet RR from Fig. 1 is.

Das zweite Ausführungsbeispiel unterscheidet sich von dem ersten Ausführungsbeispiel zweitens dadurch, dass das Registerpaket RR an seiner dem Abdeckelement 4 zugewandten Seite eine vertikale Zwischenwand VZW aufweist, die sich vom unteren Ende des Ventilators 9 bis zum unteren Ende des Registerpakets RR erstreckt. Diese vertikale Zwischenwand VZW trennt das Innere des Gehäuses 2, 3 in eine hintere Kammer K3, welche das Registerpaket RR enthält, und eine vordere Kammer K4.Secondly, the second exemplary embodiment differs from the first exemplary embodiment in that the register packet RR has on its side facing the cover element 4 a vertical intermediate wall VZW which extends from the lower end of the fan 9 to the lower end of the register packet RR. This vertical partition VZW separates the inside of the housing 2, 3 into a rear chamber K3, which contains the register package RR, and a front chamber K4.

Das zweite Ausführungsbeispiel unterscheidet sich von dem ersten Ausführungsbeispiel drittens dadurch, dass ein Aufhängungsmittel 8 im Innern des Gehäuses 2, 3 in der vorderen Kammer K4 vorgesehen ist. Dieses Aufhängungsmittel 8 ist ein sich in horizontaler Richtung parallel zur Ebene des Registerpakets RR (d.h. senkrecht zur Zeichnungsebene der Fig. 1) erstreckender Bügel 8, der an der vertikalen Zwischenwand ZW befestigt ist. An diesem Bügel 8 kann ein Handtuch H aufgehängt werden, das dann in der vorderen Kammer K4 von dem Bügel 8 herabhängt.Thirdly, the second exemplary embodiment differs from the first exemplary embodiment in that a suspension means 8 is provided in the interior of the housing 2, 3 in the front chamber K4. This suspension means 8 is in a horizontal direction parallel to the plane of the register packet RR (ie perpendicular to the plane of the drawing) Fig. 1 ) extending bracket 8, which is fixed to the vertical partition ZW. A towel H can be hung on this bracket 8, which then hangs from the bracket 8 in the front chamber K4.

Das zweite Ausführungsbeispiel unterscheidet sich von dem ersten Ausführungsbeispiel viertens dadurch, dass keine Wasserzufuhr-Anschlüsse 15 mit Sprühdüsen und/oder Zerstäubungsdüsen vorgesehen sind.Fourthly, the second exemplary embodiment differs from the first exemplary embodiment in that no water supply connections 15 with spray nozzles and / or atomizing nozzles are provided.

Das zweite Ausführungsbeispiel unterscheidet sich von dem ersten Ausführungsbeispiel fünftens dadurch, dass eine horizontale Zwischenwand HZW vorgesehen ist, die sich zwischen dem Ventilator 9 und dem Abdeckelement 4 erstreckt. Die horizontale Zwischenwand HZW verhindert eine Kurzschluss-Strömung der aus dem Ventilator 9 austretenden Luft über die Öffnungen 12 und 13.Fifth, the second exemplary embodiment differs from the first exemplary embodiment in that a horizontal intermediate wall HZW is provided, which extends between the fan 9 and the cover element 4. The horizontal partition wall HZW prevents a short-circuit flow of the air emerging from the fan 9 through the openings 12 and 13.

Das in Fig. 2 gezeigte zweite Ausführungsbeispiel der erfindungsgemässen Temperierkörper-Anordnung 1 ermöglicht das Trocknen und Erwärmen eines Handtuchs H. Darüber hinaus kann sie ähnlich wie das erste Ausführungsbeispiel einerseits zum Heizen oder Kühlen und andererseits zum Befeuchten oder Entfeuchten der Raumluft verwendet werden.This in Fig. 2 The second exemplary embodiment of the temperature control body arrangement 1 according to the invention enables drying and heating of a towel H. In addition, similar to the first exemplary embodiment, it can be used on the one hand for heating or cooling and on the other hand for humidifying or dehumidifying the room air.

Das Heizen, Kühlen oder Entfeuchten erfolgen dabei in dem durch die hintere Kammer K1 gebildeten Teil des Gehäuses 2, 3 ähnlich wie das Heizen, Kühlen oder Entfeuchten in dem gesamten Gehäuse 2, 3 bei dem ersten Ausführungsbeispiel. Das zum Heizen, Kühlen und Entfeuchten in Fig. 1 Gesagte gilt entsprechend für das Heizen, Kühlen und Entfeuchten gemäss Fig. 2.The heating, cooling or dehumidifying take place in the part of the housing 2, 3 formed by the rear chamber K1, similarly to the heating, cooling or dehumidifying in the entire housing 2, 3 in the first exemplary embodiment. That for heating, cooling and dehumidifying in Fig. 1 What has been said applies accordingly to heating, cooling and dehumidifying Fig. 2 .

Beim Befeuchten der Luft wird in dem zweiten Ausführungsbeispiel gemäss Fig. 2 das Registerpaket RR mit heissem Wasser durchströmt. Die Temperatur des heissen Wassers sollte wieder möglichst weit über dem Taupunkt der Luft mit dem angestrebten Feuchtigkeitsgehalt liegen. Alternativ oder ergänzend wird dem elektrischen Heizelement EE elektrischer Strom zugeführt. Gleichzeitig wird über das auf dem Bügel 8 in der vorderen Kammer K2 hängende nasse Handtuch H Wasser ins Innere des Gehäuses 2, 3 abgegeben. Das in Form von Wassertröpfchen in der Luft oder als Wassertropfen und/oder als benetzender Wasserfilm auf der vertikalen Zwischenwand ZW oder auf dem elektrischen Heizelement EE in dem Gehäuse vorliegende Wasser wird durch die Heizleistung des Registerpakets RR und/oder des elektrischen Heizelements EE verdampft. Die durch das Registerpaket RR und/oder das elektrische Heizelement EE zusätzlich zur Verdampfungsleistung ins Innere des Gehäuses 2, 3 abgegebene Wärme führt auch hier zu einer Erhöhung der Temperatur der befeuchteten Luft im Innern des Gehäuses 2, 3, wodurch eine natürliche Konvektion über die Öffnungen 11, 12 und 13 sowie über die optionalen Öffnungen 14 der Temperierkörper-Anordnung 1 in Gang gesetzt wird. Die in der vorderen Kammer K4 des Gehäuses 2, 3 erwärmte und befeuchtete Luft gelangt so über die oberen Öffnungen der Temperierkörper-Anordnung 1 in den Raum, wodurch die Raumluft erwärmt und befeuchtet wird, und gelangt über die unteren Öffnungen der Temperierkörper-Anordnung 1 wieder zurück in das Gehäuse 2, 3.When the air is humidified, according to the second exemplary embodiment Fig. 2 hot water flows through the register package RR. The temperature of the hot water should again be as high as possible above the dew point of the air with the desired moisture content. Alternatively or in addition, electrical current is supplied to the electrical heating element EE. At the same time, water is released into the interior of the housing 2, 3 via the wet towel H hanging on the bracket 8 in the front chamber K2. The water present in the form of water droplets in the air or as water drops and / or as a wetting water film on the vertical intermediate wall ZW or on the electrical heating element EE in the housing is evaporated by the heating power of the register package RR and / or the electrical heating element EE. The heat given off by the register package RR and / or the electric heating element EE in addition to the evaporation power into the interior of the housing 2, 3 also leads to an increase in the temperature of the humidified air inside the housing 2, 3, as a result of which natural convection via the openings 11, 12 and 13 and via the optional openings 14 of the temperature control body arrangement 1 is started. The heated and humidified air in the front chamber K4 of the housing 2, 3 thus enters the room via the upper openings of the temperature control body arrangement 1, as a result of which the room air is heated and humidified, and arrives again via the lower openings of the temperature control body arrangement 1 back into the housing 2, 3.

Bei Bedarf kann diese natürliche Konvektion durch den Ventilator 9 verstärkt oder umgekehrt werden. Der Ventilator 9 fördert hierfür die von dem nassen Handtuch H stammende erwärmte und befeuchtete Luft in der vorderen Kammer K4 von unten nach oben (in Fig. 1 nicht gezeigt) oder bevorzugt von oben nach unten (in Fig. 1 gezeigt).If necessary, this natural convection can be intensified by the fan 9 or vice versa. For this purpose, the fan 9 promotes the heated and humidified air originating from the wet towel H in the front chamber K4 from bottom to top (in Fig. 1 not shown) or preferably from top to bottom (in Fig. 1 shown).

Um die durch das Registerpaket RR und das elektrische Heizelement EE erzeugte Trocknungsleistung beim Trocknen des Handtuchs H und Befeuchten des Raums noch zu verstärken, kann auch hier das weitere Heizelement 17 zusätzlich aktiviert werden, wodurch die durch den Ventilator 9 geförderte Luft noch stärker als durch das Registerpaket RR und/oder das elektrische Heizelement EE erwärmt wird. Dabei strömt die von dem Ventilator 9 angetriebene und erwärmte Luft in der vorderen Kammer K4 von oben nach unten an dem aufgehängten Handtuch H entlang. Aus der vorderen Kammer K4 gelangt dabei ein erster Teil dieser erwärmten und durch das Handtuch H befeuchteten Luft über die beiden vertikalen Bereiche des Spalts 13 sowie über den unteren horizontalen Teil des Spalts 13 in den Raum. Ein zweiter Teil dieser erwärmten und durch das Handtuch H befeuchteten Luft aus der vorderen Kammer K4 gelangt im unteren Bereich des Gehäuses 2, 3 von der vorderen Kammer K4 in die hintere Kammer K3, wird dort von dem warmen Registerpaket RR erwärmt und steigt in der hinteren Kammer K3 am Registerpaket RR entlang nach oben, um schliesslich über die horizontale schlitzartige Öffnung 12 in den Raum zu gelangen.In order to increase the drying power generated by the register package RR and the electric heating element EE when drying the towel H and humidifying the room , the additional heating element 17 can also be activated here, so that the air conveyed by the fan 9 is even stronger than by the Register package RR and / or the electric heating element EE is heated. The air driven and heated by the fan 9 flows in the front chamber K4 from top to bottom along the hanging towel H. From the front chamber K4, a first part of this heated and humidified air by the towel H enters the room via the two vertical regions of the gap 13 and the lower horizontal part of the gap 13. A second part of this heated and humidified by the towel H air from the front chamber K4 passes in the lower region of the housing 2, 3 from the front chamber K4 into the rear chamber K3, is heated there by the warm register package RR and rises in the rear Chamber K3 along the register packet RR upwards to finally enter the room via the horizontal slot-like opening 12.

Von dem nassen Handtuch H herabtropfendes Wasser gelangt direkt in die Wasserauffang-Pfanne 18 und von dort in den Wasserabfuhr-Anschluss 16 und wird abgeführt.Water dripping from the wet towel H goes directly into the water collecting pan 18 and from there into the water drainage connection 16 and is discharged.

In Fig. 3 ist ein drittes Ausführungsbeispiel der erfindungsgemässen Temperierkörper-Anordnung 1 gezeigt. Die Temperierkörper-Anordnung 1 ist auf einem Boden B und an einer Wand W angeordnet. Sie enthält ein Trägerelement 2, ein Rahmenelement 3, ein Abdeckelement 4 sowie ein von einem elektrischen Strom durchströmbares elektrisches Heizelement EE.In Fig. 3 A third exemplary embodiment of the temperature control body arrangement 1 according to the invention is shown. The temperature control body arrangement 1 is on a floor B and arranged on a wall W. It contains a carrier element 2, a frame element 3, a cover element 4 and an electrical heating element EE through which an electrical current can flow.

Der Aufbau des dritten Ausführungsbeispiels stimmt in weiten Teilen mit dem Aufbau des ersten und zweiten Ausführungsbeispiels überein. Sämtliche Elemente des in Fig. 3 gezeigten dritten Ausführungsbeispiels, die denen der in Fig. 1 und in Fig. 2 gezeigten Ausführungsbeispiele entsprechen, tragen in Fig. 3 dieselben Bezugszeichen wie in Fig. 1 oder in Fig. 2.The structure of the third exemplary embodiment largely corresponds to the structure of the first and second exemplary embodiments. All elements of the in Fig. 3 shown third embodiment, that of the in Fig. 1 and in Fig. 2 shown embodiments correspond to in Fig. 3 the same reference numerals as in Fig. 1 or in Fig. 2 .

Das dritte Ausführungsbeispiel unterscheidet sich von dem zweiten Ausführungsbeispiel erstens dadurch, dass kein Registerpaket RR vorhanden ist.The third exemplary embodiment differs from the second exemplary embodiment firstly in that there is no register packet RR.

Das dritte Ausführungsbeispiel unterscheidet sich von dem zweiten Ausführungsbeispiel zweitens dadurch, dass keine vertikale Zwischenwand VZW vorhanden ist.Secondly, the third exemplary embodiment differs from the second exemplary embodiment in that there is no vertical partition VZW.

Das dritte Ausführungsbeispiel unterscheidet sich von dem zweiten Ausführungsbeispiel drittens dadurch, dass ein weiteres Aufhängungsmittel 8 vorgesehen ist, das an dem Trägerelement 2 befestigt ist.Thirdly, the third exemplary embodiment differs from the second exemplary embodiment in that a further suspension means 8 is provided, which is fastened to the carrier element 2.

Das dritte Ausführungsbeispiel unterscheidet sich von dem zweiten Ausführungsbeispiel viertens dadurch, dass eine horizontale Zwischenwand HZW wie bei dem ersten Ausführungsbeispiel vorgesehen ist, die sich im oberen Teil des Gehäuses 2, 3 quer zwischen dem Trägerelement 2 und dem Rahmenelement 3 erstreckt. Diese horizontale Zwischenwand HZW trennt das Innere des Gehäuses 2, 3 in eine obere Kammer K1, in welcher sich der Ventilator 9 befindet, und eine untere Kammer K2, in welcher sich die beiden Aufhängungsmittel bzw. Bügel 8 und zwei daran aufgehängte Handtücher H1 und H2 befinden. Die horizontale Zwischenwand HZW verhindert eine Kurzschluss-Strömung der aus dem Ventilator 9 austretenden Luft über die Öffnungen 12 und 13.Fourthly, the third exemplary embodiment differs from the second exemplary embodiment in that a horizontal intermediate wall HZW is provided as in the first exemplary embodiment, which extends transversely between the carrier element 2 and the frame element 3 in the upper part of the housing 2, 3. This horizontal partition wall HZW separates the inside of the housing 2, 3 into an upper chamber K1, in which the fan 9 is located, and a lower chamber K2, in which the two suspension means or brackets 8 and two towels H1 and H2 suspended thereon are located. The horizontal partition wall HZW prevents a short-circuit flow of the air emerging from the fan 9 through the openings 12 and 13.

Das in Fig. 3 gezeigte dritte Ausführungsbeispiel der erfindungsgemässen Temperierkörper-Anordnung 1 ermöglicht in erster Linie bei eingeschaltetem elektrischem Heizelement EE das Trocknen und Erwärmen eines oder mehrerer Handtücher H1, H2. Darüber hinaus kann sie ähnlich wie das erste Ausführungsbeispiel einerseits zum Heizen und andererseits zum Befeuchten der Raumluft verwendet werden. Dabei ist eine durch den Ventilator 9 erzeugte Zwangskonvektion der Luft durch das Gehäuse 2, 3 von oben nach unten vorgesehen.This in Fig. 3 The third exemplary embodiment of the temperature control body arrangement 1 according to the invention shown allows, primarily when the electric heating element EE is switched on, drying and heating one or more towels H1, H2. In addition, similar to the first embodiment, it can be used for heating on the one hand and for moistening the other Indoor air can be used. A forced convection of the air through the housing 2, 3 generated by the fan 9 is provided from top to bottom.

Bei Bedarf kann das am Ventilator 9 angeordnete weitere Heizelement 17 eingeschaltet werden, wodurch die Heizleistung des Heizelements EE und somit die Trocknungsleistung der Temperierkörper-Anordnung 1 noch weiter erhöht werden kann.If required, the further heating element 17 arranged on the fan 9 can be switched on, as a result of which the heating power of the heating element EE and thus the drying power of the temperature control body arrangement 1 can be increased still further.

In Fig. 4 eine schematische Vorderansicht (Frontansicht) der erfindungsgemässen Temperierkörper-Anordnung 1 von Fig. 1, Fig. 2 und Fig. 3 gezeigt. Man erkennt die Wand W und das Abdeckelement 4 der Temperierkörper-Anordnung 1. Oberhalb des Abdeckelements 4 erstreckt sich das Bedienfeld 19 mit Bedienelementen B1, B2, B3, B4, B5, B6. In der in Fig. 1 gezeigten Ansicht ist die von dem Rahmenelement 3 umgebene Öffnung 7 des Gehäuses 2, 3 (siehe Fig. 1) bei hochgeschwenktem Abdeckelement 4 in seiner vertikalen ersten Stellung S1 abgedeckt. Die Temperierkörper-Anordnung 1 hat weitere Öffnungen 11, 12, 13, 14 (siehe auch Fig. 1), die jeweils einen Luftdurchtritt und somit insgesamt eine Luftströmung durch das Gehäuse 2, 3 hindurch ermöglichen.In Fig. 4 is a schematic front view (front view) of the inventive tempering body arrangement 1 of Fig. 1 , Fig. 2 and Fig. 3 shown. The wall W and the cover element 4 of the temperature control body arrangement 1 can be seen. The control panel 19 with control elements B1, B2, B3, B4, B5, B6 extends above the cover element 4. In the in Fig. 1 The view shown is the opening 7 of the housing 2, 3 surrounded by the frame element 3 (see Fig. 1 ) covered with its cover element 4 pivoted up in its vertical first position S1. The temperature control body arrangement 1 has further openings 11, 12, 13, 14 (see also Fig. 1 ), each of which allows air to pass through and thus overall air flow through the housing 2, 3.

Am oberen Ende hat das Abdeckelement 4 an seinem oberen Rand eine mittig angeordnete trapezförmige Öffnung 11, die einerseits einen Luftdurchtritt ermöglicht und andererseits als Griff-Aussparung dient, an der man das obere Ende des Abdeckelements 4 ergreifen und dieses von seiner vertikalen ersten Stellung S1 in seine geneigte zweite Stellung S2 und wieder zurück bewegen kann.At the upper end, the cover element 4 has at its upper edge a centrally arranged trapezoidal opening 11, which on the one hand allows air to pass through and on the other hand serves as a handle recess where one can grasp the upper end of the cover element 4 and move it from its vertical first position S1 in can move its inclined second position S2 and back again.

In Fig. 5A, 5B und 5C sind ein viertes Ausführungsbeispiel der erfindungsgemässen Temperierkörper-Anordnung 1 gezeigt. Die Temperierkörper-Anordnung 1 enthält eine untere Temperierkörper-Anordnung 1a und eine obere Temperierkörper-Anordnung 1b. Die Temperierkörper-Anordnung 1 ist über einem Boden B und an einer Wand W angeordnet. Sie enthält ein Trägerelement 2, ein Rahmenelement 3', ein Abdeckelement 4 sowie ein von einem elektrischen Strom durchströmbares elektrisches Heizelement EE.In 5A, 5B and 5C A fourth exemplary embodiment of the temperature control body arrangement 1 according to the invention is shown. The temperature control body arrangement 1 contains a lower temperature control body arrangement 1a and an upper temperature control body arrangement 1b. The temperature control body arrangement 1 is arranged above a floor B and on a wall W. It contains a carrier element 2, a frame element 3 ', a cover element 4 and an electrical heating element EE through which an electrical current can flow.

Der Aufbau des vierten Ausführungsbeispiels stimmt in weiten Teilen mit dem Aufbau des dritten Ausführungsbeispiels überein. Sämtliche Elemente des in Fig. 5 gezeigten vierten Ausführungsbeispiels, die denen des in Fig. 3 gezeigten Ausführungsbeispiels entsprechen, tragen in Fig. 5 dieselben Bezugszeichen wie in Fig. 3.The structure of the fourth embodiment largely corresponds to the structure of the third embodiment. All elements of the in Fig. 5 shown fourth embodiment, that of the in Fig. 3 shown Correspond to embodiment, wear in Fig. 5 the same reference numerals as in Fig. 3 .

Wie bei dem dritten Ausführungsbeispiel ist auch bei dem vierten Ausführungsbeispiel kein Registerpaket RR (siehe Fig. 1, Fig. 2) vorhanden.As in the third exemplary embodiment, no register packet RR (see Fig. 1 , Fig. 2 ) available.

Wie bei dem dritten Ausführungsbeispiel ist keine vertikale Zwischenwand VZW (siehe Fig. 2) vorhanden.As in the third embodiment, there is no vertical partition VZW (see Fig. 2 ) available.

Wie bei dem dritten Ausführungsbeispiel ist ein weiteres Aufhängungsmittel 8 vorgesehen ist, das an dem Trägerelement 2 befestigt ist. Das eine der Aufhängungsmittel 8 gehört zu der unteren Temperierkörper-Anordnung 1a. Das andere der Aufhängungsmittel 8 gehört zu der oberen Temperierkörper-Anordnung 1b.As in the third exemplary embodiment, a further suspension means 8 is provided, which is fastened to the carrier element 2. One of the suspension means 8 belongs to the lower temperature control body arrangement 1a. The other of the suspension means 8 belongs to the upper temperature control body arrangement 1b.

Das in Fig. 5A, 5B und 5C gezeigte vierte Ausführungsbeispiel der erfindungsgemässen Temperierkörper-Anordnung 1 ermöglicht in erster Linie bei eingeschaltetem elektrischem Heizelement EE das Trocknen und Erwärmen eines oder mehrerer Handtücher H1, H2. Darüber hinaus kann sie ähnlich wie das erste Ausführungsbeispiel zum Heizen der Raumluft verwendet werden.This in 5A, 5B and 5C The fourth exemplary embodiment of the temperature control body arrangement 1 according to the invention shown allows, in the first place, the drying and heating of one or more towels H1, H2 when the electric heating element EE is switched on . In addition, it can be used similarly to the first exemplary embodiment for heating the room air.

Aufgrund der gegenüber den weiter oben beschriebenen ersten drei Ausführungsbeispielen viel grösseren Höhe der Temperierkörper-Anordnung 1 des vierten Ausführungsbeispiels entsteht bei diesem eine natürliche Konvektion von unten nach oben, die stärker als eine entsprechende natürliche Konvektion bei den zuvor beschriebenen Ausführungsbeispielen geringerer Bauhöhe ist.Due to the much greater height of the temperature control body arrangement 1 of the fourth exemplary embodiment compared to the first three exemplary embodiments described above, this produces a natural convection from bottom to top, which is stronger than a corresponding natural convection in the previously described exemplary embodiments of lower overall height.

Zusätzlich kann aber auch durch einen Ventilator 9 (siehe Fig. 1, Fig. 2, Fig. 3) eine zusätzlich erzeugte Zwangskonvektion der Luft durch das Gehäuse 2, 3 von unten nach oben vorgesehen werden.In addition, a fan 9 (see Fig. 1 , Fig. 2 , Fig. 3 ) An additional generated convection of the air through the housing 2, 3 from bottom to top can be provided.

Alternativ kann aber auch, wie bei den vorgenannten Ausführungsbeispielen, durch einen Ventilator 9 (siehe Fig. 1, Fig. 2, Fig. 3) eine Zwangskonvektion der Luft durch das Gehäuse 2, 3 von oben nach unten vorgesehen werden.Alternatively, as in the aforementioned exemplary embodiments, a fan 9 (see FIG Fig. 1 , Fig. 2 , Fig. 3 ) forced convection of the air through the housing 2, 3 is provided from top to bottom.

Bei allen vier Ausführungsbeispielen kann das Abdeckelement 4 bezüglich des Trägerelements 2 mittels Gelenkelementen bezüglich des Rahmenelements 3 um eine vertikale Achse oder um eine horizontale Achse an einem Teil des Rahmenelements 3 verdrehbar angeordnet sein. Das Abdeckelement 4 ist somit stets bewegbar zwischen einer ersten Stellung, in welcher das Abdeckelement 4 die Öffnung 7 des Gehäuses 2, 3 abdeckt, und einer zweiten Stellung, in welcher das Abdeckelement 4 die Öffnung 7 des Gehäuses 2, 3 nicht abdeckt.In all four exemplary embodiments, the cover element 4 can be attached to the carrier element 2 by means of articulated elements with respect to the frame element 3 about a vertical axis or about a horizontal axis on a part of the Frame element 3 can be rotatably arranged. The cover element 4 is thus always movable between a first position in which the cover element 4 covers the opening 7 of the housing 2, 3 and a second position in which the cover element 4 does not cover the opening 7 of the housing 2, 3.

Claims (14)

  1. Temperature-adjustment-element assembly (1) which has a support element (2), a frame element (3), a cover element (4), together with at least one temperature-adjustment-element (RR1, RR2, ....RRn; EE) available for through-flow by an energy-conveying medium, with a feed pipe (5) and a discharge outlet (6) for the energy-conveying medium, wherein the support element (2) and the frame element (3) together form a housing (2, 3) which encompasses the temperature-adjustment-element or elements (RR1, RR2, ....RRn; EE), wherein the cover element (4) is mounted movably relative to the support element (2) and the frame element (3), and is movable between a first position (S1) in which the cover element (4) covers an opening (7) of the housing (2, 3), and a second position (S2) in which the cover element (4) does not cover an opening (7) of the housing (2, 3), wherein it has inside the housing (2, 3) hanging means (8) on which objects requiring intensive temperature adjustment, such as e.g. a hand towel, an item of clothing, footwear, etc. may be hung inside the housing, and wherein the temperature-adjustment-element or elements (RR1, RR2, ....RRn; EE) available for through-flow by an energy-conveying medium include a temperature-adjustment-element (RR1, RR2, ....RRn; EE) mounted on the cover element (4), characterised in that the temperature-adjustment-element or elements include a pipe register (RR1, RR2, ....RRn) available for through-flow by a heat exchanger fluid, with a feed pipe (5) and a return pipe (6) for the heat exchanger fluid.
  2. Temperature-adjustment-element assembly (1) according to claim 1, characterised in that the temperature-adjustment-element or elements include a heating element or cooling element (EE) through which electrical current may flow, with a supply line (5) and a discharge line (6) for the electrical current.
  3. Temperature-adjustment-element assembly (1) according to claim 1 or 2, characterised in that the support element (2) and the frame element (3) are rigidly connected to one another and/or that the temperature-adjustment-element or elements (RR1, RR2, ....RRn; EE) available for through-flow by an energy-conveying medium includes or include a temperature-adjustment- element (RR1, RR2, ....RRn; EE), with a feed line (5) and a discharge line (6) for the energy-conveying medium, which is mounted in the housing (2, 3).
  4. Temperature-adjustment-element assembly (1) according to claim 3, characterised in that at least one temperature-adjustment-element (RR1, RR2, ....RRn; EE) available for through-flow by an energy-conveying medium is thermally decoupled from the environment of the temperature-adjustment-element assembly by means of the housing (2, 3).
  5. Temperature-adjustment element assembly (1) according to any of claims 1 to 4, characterised in that the cover element (4) is thermally coupled to the temperature-adjustment-element or elements (RR1, RR2, ....RRn; EE) and/or that the temperature-adjustment-element or elements (RR1, RR2, ....RRn; EE) is or are mounted on the side of the cover element (4) facing the housing (2, 3).
  6. Temperature-adjustment-element assembly (1) according to any of claims 1 to 5, characterised in that a fan (9) is provided in the interior of the housing (2, 3) and/or that the housing (2, 3) has at least one further opening (11, 12).
  7. Temperature-adjustment-element assembly (1) according to any of claims 1 to 6, characterised in that there is a gap (13) between the cover element (4) and the housing (2, 3) when the cover element (4) is in its first position (S1) covering the opening (7) of the housing (2, 3).
  8. Temperature-adjustment-element assembly (1) according to any of claims 1 to 7, characterised in that the cover element (4) has at least one opening (14).
  9. Temperature-adjustment-element assembly (1) according to any of claims 1 to 8, characterised in that it has a water supply port (15) for moistening the inside of the housing (2, 3) and a water discharge port (16) for de-moisturising the inside of the housing (2, 3).
  10. Temperature-adjustment-element assembly (1) according to any of claims 1 to 9, characterised in that it has an electrical heating element (17), wherein the electrical heating element (17) is advantageously assigned to the fan (9).
  11. Temperature-adjustment-element assembly (1) according to any of claims 1 to 110, characterised in that the pipe register or registers (RR1, RR2, ....RRn) is or are made of polymer material.
  12. Temperature-adjustment-element assembly (1) according to any of claims 1 to 11, characterised in that it may be integrated into a piece of furniture, such as e.g. a wall unit or into a partition wall or a room divider, and/or that it contains at least one additional storage space, located next to the housing (2, 3) of the temperature-adjustment-element assembly (1) and separated from the housing (2, 3) by a partition wall, wherein the partition wall advantageously contains openings which allow an exchange of air between the additional storage space or spaces and the interior of the housing (2, 3) of the temperature-adjustment-element assembly (1).
  13. Temperature-adjustment-element assembly (1) according to any of claims 1 to 12, characterised in that the cover element (4) has a lighting function, wherein advantageously it is provided that the cover element (4) contains a passive lighting function or an active lighting function.
  14. Front panel arrangement containing a temperature-adjustment-element assembly (1) according to to any of claims 1 to 13, wherein it is provided advantageously that there is a gap between the cover element (4) of the temperature-adjustment-element assembly (1) and the front panel and/or that the cover element (4) and the front panel are flush and/or that the cover element (4), in addition also advantageously at least a part of the housing, protrudes from the front panel.
EP16831520.8A 2015-12-23 2016-12-08 Temperature control element arrangement and pre-wall arrangement with such a temperature control element arrangement Active EP3393318B8 (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
PL16831520T PL3393318T3 (en) 2015-12-23 2016-12-08 Temperierkörper-anordnung sowie vorwand-anordnung mit einer solchen temperierkörper-anordnung
EP20161990.5A EP3682778B1 (en) 2015-12-23 2016-12-08 Tempering body arrangement and a false wall arrangement comprising such a tempering body arrangement

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CH19162015 2015-12-23
PCT/IB2016/057424 WO2017109622A1 (en) 2015-12-23 2016-12-08 Temperature-control unit arrangement and front wall arrangement comprising a temperature-control unit arrangement of this type

Related Child Applications (2)

Application Number Title Priority Date Filing Date
EP20161990.5A Division-Into EP3682778B1 (en) 2015-12-23 2016-12-08 Tempering body arrangement and a false wall arrangement comprising such a tempering body arrangement
EP20161990.5A Division EP3682778B1 (en) 2015-12-23 2016-12-08 Tempering body arrangement and a false wall arrangement comprising such a tempering body arrangement

Publications (3)

Publication Number Publication Date
EP3393318A1 EP3393318A1 (en) 2018-10-31
EP3393318B1 true EP3393318B1 (en) 2020-04-22
EP3393318B8 EP3393318B8 (en) 2020-11-04

Family

ID=57890863

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Application Number Title Priority Date Filing Date
EP20161990.5A Active EP3682778B1 (en) 2015-12-23 2016-12-08 Tempering body arrangement and a false wall arrangement comprising such a tempering body arrangement
EP16831520.8A Active EP3393318B8 (en) 2015-12-23 2016-12-08 Temperature control element arrangement and pre-wall arrangement with such a temperature control element arrangement

Family Applications Before (1)

Application Number Title Priority Date Filing Date
EP20161990.5A Active EP3682778B1 (en) 2015-12-23 2016-12-08 Tempering body arrangement and a false wall arrangement comprising such a tempering body arrangement

Country Status (5)

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EP (2) EP3682778B1 (en)
CN (1) CN108697280B (en)
EA (1) EA201891288A1 (en)
PL (2) PL3682778T3 (en)
WO (1) WO2017109622A1 (en)

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WO2020183351A1 (en) * 2019-03-11 2020-09-17 Zehnder Group International Ag Radiating-means assembly
CN110130068B (en) * 2019-06-13 2021-06-22 义乌市丹航科技有限公司 Domestic automatic clothes hanger that dries in air of receiving

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Also Published As

Publication number Publication date
EP3393318A1 (en) 2018-10-31
CN108697280A (en) 2018-10-23
EP3682778A1 (en) 2020-07-22
PL3682778T3 (en) 2024-08-26
WO2017109622A1 (en) 2017-06-29
EP3393318B8 (en) 2020-11-04
EP3682778C0 (en) 2024-05-01
PL3393318T3 (en) 2020-11-16
EP3682778B1 (en) 2024-05-01
EA201891288A1 (en) 2019-01-31
CN108697280B (en) 2022-03-15

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