EP2466238A2 - Drying apparatus - Google Patents
Drying apparatus Download PDFInfo
- Publication number
- EP2466238A2 EP2466238A2 EP11009564A EP11009564A EP2466238A2 EP 2466238 A2 EP2466238 A2 EP 2466238A2 EP 11009564 A EP11009564 A EP 11009564A EP 11009564 A EP11009564 A EP 11009564A EP 2466238 A2 EP2466238 A2 EP 2466238A2
- Authority
- EP
- European Patent Office
- Prior art keywords
- drying
- drying chamber
- flow
- chamber
- air
- 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.)
- Granted
Links
- 238000001035 drying Methods 0.000 title claims abstract description 378
- 238000000034 method Methods 0.000 claims abstract description 32
- 239000002131 composite material Substances 0.000 claims abstract description 27
- 239000000463 material Substances 0.000 claims description 31
- 238000010438 heat treatment Methods 0.000 claims description 17
- 239000003795 chemical substances by application Substances 0.000 claims description 9
- 238000004891 communication Methods 0.000 claims description 4
- 238000010981 drying operation Methods 0.000 claims description 3
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims description 3
- 238000007599 discharging Methods 0.000 claims 2
- 239000012530 fluid Substances 0.000 abstract description 7
- 238000011161 development Methods 0.000 description 20
- 230000018109 developmental process Effects 0.000 description 20
- 238000005457 optimization Methods 0.000 description 19
- 238000013016 damping Methods 0.000 description 7
- 239000002023 wood Substances 0.000 description 5
- 230000008569 process Effects 0.000 description 4
- 230000009471 action Effects 0.000 description 3
- 230000000712 assembly Effects 0.000 description 3
- 238000000429 assembly Methods 0.000 description 3
- 238000001816 cooling Methods 0.000 description 3
- 238000001514 detection method Methods 0.000 description 3
- 230000002441 reversible effect Effects 0.000 description 3
- 238000007605 air drying Methods 0.000 description 2
- 238000013461 design Methods 0.000 description 2
- 238000010586 diagram Methods 0.000 description 2
- 239000013505 freshwater Substances 0.000 description 2
- 230000008054 signal transmission Effects 0.000 description 2
- 230000015572 biosynthetic process Effects 0.000 description 1
- 238000009529 body temperature measurement Methods 0.000 description 1
- 230000007613 environmental effect Effects 0.000 description 1
- 230000012447 hatching Effects 0.000 description 1
- 230000016507 interphase Effects 0.000 description 1
- 238000005259 measurement Methods 0.000 description 1
- 238000002156 mixing Methods 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 238000005192 partition Methods 0.000 description 1
- 230000003134 recirculating effect Effects 0.000 description 1
- 238000011084 recovery Methods 0.000 description 1
- 230000009467 reduction Effects 0.000 description 1
- 230000003797 telogen phase Effects 0.000 description 1
- 238000012546 transfer Methods 0.000 description 1
Images
Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F26—DRYING
- F26B—DRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
- F26B21/00—Arrangements or duct systems, e.g. in combination with pallet boxes, for supplying and controlling air or gases for drying solid materials or objects
- F26B21/02—Circulating air or gases in closed cycles, e.g. wholly within the drying enclosure
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F26—DRYING
- F26B—DRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
- F26B21/00—Arrangements or duct systems, e.g. in combination with pallet boxes, for supplying and controlling air or gases for drying solid materials or objects
- F26B21/06—Controlling, e.g. regulating, parameters of gas supply
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F26—DRYING
- F26B—DRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
- F26B2210/00—Drying processes and machines for solid objects characterised by the specific requirements of the drying good
- F26B2210/16—Wood, e.g. lumber, timber
Definitions
- the invention relates to a drying device of the type mentioned in the preamble of claim 1 for drying hygroscopic goods.
- Drying devices are well known, for example by DE 34 25 642 C1 .
- EP 0 292 717 B1 and DE 10 2005 030 501 A1 They are used in particular for drying sawn timber.
- a drying device which has at least two separate drying chambers for receiving material to be dried, wherein each drying chamber is associated with at least one fan for flow of their working space with drying medium and wherein the drying chambers is associated with at least one heating device for heating the drying medium.
- a drying device for drying hygroscopic goods which has a plurality of drying chambers having drying chamber composite and flow medium for introducing air from at least one of the drying chambers in at least one other drying chamber and a control device for controlling the flow.
- the invention has for its object to further improve the known drying device.
- a method according to the invention is specified in claim 25.
- the claims 26 to 34 indicate advantageous and expedient developments of the method according to the invention.
- the basic idea of the invention is to optimize the energy requirement of the entire drying chamber composite or at least a part thereof during the drying process.
- the drying operations in the individual drying chambers are carried out independently of each other.
- the material to be dried for example lumber
- a drying phase with heated air, wherein the air absorbs moisture from the material to be dried and is removed.
- Corresponding drying devices are also referred to as supply / exhaust air dryer.
- a cooling phase begins.
- the dried material is successively cooled. If, for example, wood is dried, the wood may, for example, have a temperature of 80 ° C. at the end of the drying phase. In order to avoid damage to the wood when it is brought to ambient temperature, for example when opening a door of the drying device, the cooling phase is often mandatory.
- this storage heat can be used. If a drying process is completed in a drying chamber of a drying chamber composite, then the heat stored in this drying chamber can be used by passing air from this drying chamber into another drying chamber of the composite in which the material to be dried is still in the drying phase located. In this case, from the drying chamber, in which the drying process is already completed, used storage heat, which is stored not only in the dried material and in the air contained in the drying chamber, but also in components of the drying chamber, such as their walls.
- At least one of the drying chambers is associated with a sensor arrangement in signal transmission connection with the control device for sensing flow conditions of a flow flowing into the drying chamber.
- the sensor arrangement has at least two sensors which are preferably spaced apart from one another in the flow direction.
- the sensor arrangement has a plurality of individual sensors which are band-like and thus form a sensor band.
- the sensor arrangement may comprise temperature and / or humidity sensors which are spaced apart in the flow direction of the inflowing flow.
- a gradient for example a temperature and / or humidity gradient
- the individual sensors spaced apart from one another On the basis of the gradient can then be determined, for example, whether air flows into the drying chamber with a desired temperature or humidity and how far has already done this mixing with the chamber air at certain locations of the chamber.
- data can be determined with high accuracy, which allows a particularly precise control of the drying process.
- the precise control of the drying process allows an optimization of the heat requirement of the drying chamber composite during a drying process.
- a plurality of individual sensors may be arranged on a rod-like carrier, wherein the carrier may be arranged to be linearly movable and / or rotatable along its longitudinal axis.
- the sensors By appropriate movement of the carrier, the sensors to a Any suitable place be brought to feel the prevailing climate conditions there.
- the carrier it is basically sufficient if only two sensors are arranged on the carrier, which can be brought by appropriate movement of the carrier in each case to the desired location.
- a plurality of individual sensors is arranged on the carrier. The spatial resolution of the detected data is the higher, the higher the number of sensor bands forming individual sensors.
- the invention Due to the saving of energy and the reduction of CO 2 emissions, the invention has a high social utility.
- heating energy can be saved, but for example, water.
- a drying process it may first be necessary to moisten the material to be dried.
- the material to be dried is moistened with fresh water in conventional drying devices.
- a moistening can be carried out, for example, by passing moist air, which is present in one of the drying chambers of the composite as part of a drying process, into another drying chamber in which moistening is required.
- the use of fresh water is thus at least partially unnecessary. This saves costs and relieves the environment.
- the drying process which consists of drying processes that take place in the individual drying chambers of the drying chamber composite, is controlled so that as little energy is consumed. How high the actual energy savings compared to known methods or devices depends on the particular conditions of the drying chamber composite and the parameters of the individual drying operations.
- the optimization task to be performed by the control device depends on which type of energy the optimization relates to. For example, different control programs can result, depending on which type of energy optimization is performed. For example, an optimization in terms of the demand for heating energy may result in a different control program than in an optimization with regard to the demand for water.
- the drying chambers of a drying chamber composite can communicate with one another in any desired manner in accordance with the respective requirements. So it is possible according to the invention a drying chamber communicates with one or more of the remaining drying chambers.
- the fluidic interconnection of the drying chambers together can be changed during the drying process in accordance with the control program in a timely manner.
- each of the drying chambers can thus communicate with each other drying chamber in terms of flow.
- one of the drying chambers can be subjected to an alternating climate by interrupting the circulation and heating or the supply of warm drying air in this drying chamber.
- this interruption does not interrupt the drying process. Rather, the drying process continues even after interrupting the supply of hot air to be dried material over a certain period of time.
- the optimization of the energy requirement for the entire drying chamber composite can be carried out.
- the drying processes running in all drying chambers are included in the optimization.
- it is according to the invention also possible to include only individual drying chambers in the optimization, for example, when in a drying chamber a particularly sensitive drying process with respect to the material to be dried, in which the drying parameters must be kept particularly accurate.
- the formation of sub-networks and the optimization of the energy requirements for the respective sub-network can also be used to optimize the energy requirement for the entire drying chamber network.
- the drying chambers of the drying device according to the invention can be charged in any manner.
- a track car load can be used.
- drying medium according to the invention preferably air is used.
- gaseous drying media instead of or in addition to air.
- the process according to the invention can be used particularly advantageously in connection with the drying of any hygroscopic goods.
- the material to be dried may be wood, in particular lumber.
- control device can be a computer, in particular a PC.
- Corresponding computers are available with high computing power and are suitable for the execution of even complex optimization tasks.
- the flap parts may be formed according to the invention in one or more parts. If the flap parts extend in the direction of their pivot axis, for example along the width dimension of a drying chamber, then they can be formed in several parts, for example along this width extension. The individual flap parts formed in this way can again be movable independently of one another.
- the drying process according to the invention is already advantageous in a drying chamber composite consisting of only two drying chambers. However, its advantages are particularly evident in drying chamber assemblies which have more than two drying chambers.
- the number of drying chambers can be selected within wide limits.
- the drying chambers, which are also referred to below as chambers, may be arranged in series and / or in the block, wherein a loading of the drying chamber composite from one side or from both sides may be possible.
- the sensor arrangement has only two individual sensors.
- an advantageous development of the invention provides that the sensor arrangement has a plurality of band-like successive individual sensors that form a sensor band.
- the individual sensors can work according to any suitable operating principle.
- at least one individual sensor may preferably be a temperature sensor and / or an air humidity sensor and / or an air speed sensor and / or a pressure difference sensor, as provided by another advantageous development of the invention.
- a sensor arrangement may not have similar, ie operating according to different principles of action individual sensors.
- the sensor arrangement comprises at least two similar sensors having. Under similar sensors are understood in this context sensors that operate on the same principle of action, so for example, perform a temperature measurement.
- each drying chamber is assigned its own sensor arrangement and / or that at least two drying chambers is assigned a common sensor arrangement.
- a sensor arrangement with only two individual sensors can be assigned to two drying chambers, so that the one individual sensor is assigned to one and the other individual sensor to the other drying chamber.
- each drying chamber is assigned its own sensor arrangement or at least part of the drying chambers its own sensor arrangement, it is expedient if the individual drying sensors assigned to different drying chambers are of the same design, ie operate according to the same operating principle.
- the individual sensors can be arranged at any suitable point in the drying chambers both in the respective working chamber of the drying chamber and in at least one flow channel interconnecting the drying chambers, wherein the individual sensors can be arranged in any suitable manner on components of the drying chamber.
- the carrier is arranged to be movable.
- the carrier may be formed by a tube, on whose outer surface a plurality of individual sensors is arranged and in the interior of which electrical lines of the individual sensors are guided.
- the carrier is linearly movable and / or rotatable, wherein the carrier at least one linear drive and / or at least one rotary drive can be assigned.
- a plurality of individual sensors may be disposed on a rod-like carrier which is both linearly movable and rotatable. In this way, the position of the individual sensors and thus of the sensor arrangement (s) can be varied within wide limits.
- an advantageous development of the invention provides at least one outside climate sensor arranged outside the drying chambers, which is preferably arranged on the carrier. In this way it is possible to include the outside climate in the control of the drying device and to take into account during the drying process resulting changes in the external climate in the control.
- At least one sensor band in this embodiment, for example, it is possible for at least one sensor band to be arranged essentially horizontally and / or at least one sensor band to be substantially vertical.
- at least one sensor band in this embodiment, it is possible to provide a substantially horizontally arranged sensor band in a flow channel interconnecting the drying chambers, while in the useful space of at least one drying chamber a substantially vertically arranged sensor band is provided.
- a substantially horizontally arranged sensor strip in the working space of at least one drying chamber.
- other advantageous developments of the invention provide that at least one sensor band is arranged in a flow channel connecting at least two drying chambers and / or that at least one sensor band is arranged in a useful space of a drying chamber.
- Another advantageous development of the embodiment with at least two sensor bands provides that at least two sensor bands are arranged substantially perpendicular to each other.
- the shut-off device can in this case in particular be infinitely variable between a closed position in which it separates the useful space of the drying chamber from the flow channel and an open position in which the drying chamber is in fluid communication with the flow channel. In intermediate positions, the shut-off device then assumes a metering function.
- shut-off device provides that at least one drying chamber has at least one flap-like shut-off device which has at least two relatively movable flap parts which release a flow opening of the drying chamber in an open position and close the flow opening in a closed position.
- the fact that the shut-off device has at least two flap parts it can perform various functions. For example, serve at least one of the flap parts in the open position as a flow baffle.
- Another flap part may serve, for example, to close a remaining when using the drying chamber between the top of the material to be dried and the ceiling or false ceiling of the drying chamber clearance and thereby prevent this space forms a bypass for an inflowing into the chamber flow. This ensures that the flow of the drying medium leaves the drying chamber only after it has flowed through the material to be dried.
- the in claim 19, which plays an independent inventive significance, defined shut-off is thus designed multifunctional.
- shut-off device for separating the useful space of a drying chamber from a flow channel, via which the drying chamber drying medium from at least one other drying chamber is supplied or is supplied is formed.
- the flap parts can be movable according to the respective requirements in any suitable manner.
- An advantageous and expedient development provides so far that the flap parts are pivotally mounted.
- the movement of the flap parts can be coupled to each other.
- An advantageous development provides insofar as the flap parts are movable independently of each other. In this way, the possibilities of the flow line through the flap parts are further expanded.
- shut-off device provides that at least one of the flap parts for closing a when using the drying chambers between the ceiling or false ceiling and the space to be dried formed free space is formed. In this way, a "bypass flow" of the drying medium is avoided by the free space from an inlet opening directly to an outlet opening and ensures that the drying medium flows through the material to be dried. In this way, the energy efficiency of the device according to the invention is further improved.
- Another development of the invention provides that at least one flap part is articulated in the ceiling or false ceiling.
- the energy efficiency can be increased not only by the fact that storage heat is used from the individual drying chambers.
- the method according to the invention makes it possible to avoid so-called "dead heat".
- the term "dead heat” is understood as follows: If supply air is supplied as drying medium to a drying chamber via an inlet air opening, then it is necessary to maximize the energy efficiency so that the drying medium is not discharged via the exhaust air opening until it has flowed through the material to be dried , If reversible (reversible) fans are used in their direction of rotation, it is possible that in a desired direction of rotation of the fans, the heated drying medium in the desired manner flows through the material to be dried and is subsequently discharged through the exhaust port, while in the opposite direction of rotation Fans part of the flow of the warm drying medium flows directly from the supply air opening to the exhaust port.
- the invention solves the idea of making the opening and closing of the supply and exhaust ports of a chamber synchronously. Rather, according to the invention, the supply air and exhaust air openings can be controlled asynchronously.
- an advantageous embodiment of the invention provides that a drying chamber associated Zu Kunststoffö réelle open and the associated exhaust port is closed and that originating from the drying chamber air flow is passed to the exhaust port of another drying chamber. In this way, “dead heat” can be avoided in an efficient manner, so that the energy efficiency of the method according to the invention is further increased.
- drying medium can be used according to the invention air.
- another gaseous medium for example superheated steam.
- the basic principle of the invention can be transferred from drying devices or drying processes in the same manner to other devices or processes in which hygroscopic goods are treated.
- the subject matter of the invention thus also includes, for example, damping devices in which hygroscopic goods, for example wood, are damped.
- a corresponding damping device then has, according to the invention, a damping chamber composite comprising a plurality of damping chambers, as well as flow medium for introducing a damping medium from at least one of the damping chambers into at least one other damping chamber.
- the process according to the invention can also be analogously applied to other processes to transfer hygroscopic goods.
- a drying device 2 for drying hygroscopic goods having a drying chamber composite with a plurality of drying chambers.
- a drying chamber composite with a plurality of drying chambers.
- four drying chambers are shown and labeled A, B, C and D.
- the drying chamber A will be explained in more detail below.
- the drying chambers B, C and D are constructed accordingly, and their components are provided with reference numerals corresponding to the reference numerals of the components of the drying chamber A.
- the drying device 2 comprises flow agents for introducing drying medium, in particular air, from at least one of the drying chambers into at least one other drying chamber. These agents are described below on the basis of FIGS. 1 to 4 explained in more detail.
- the drying device 2 also has a control device for controlling the flow media. This control device will be described below with reference to Fig. 5 explained in more detail.
- the drying device 2 is particularly suitable for carrying out a method according to the invention.
- the drying device 2 operates on the principle of the supply / exhaust air drying, in which the work space 6 of the drying chamber A, is received in the material to be dried 8, a heated drying medium is supplied.
- the material 8 to be dried is stacked lumber.
- the drying device 2 is also suitable for drying other hygroscopic goods.
- at least one supply air opening is supplied with fresh air as the drying medium per drying chamber A.
- the drying chamber A at least one supply air opening.
- the drying chamber A on three supply air, of which for the sake of clarity, only one supply air opening is provided with the reference numeral 10.
- Fig. 2 shows a plan view of the drying device 2.
- Fresh air supplied via the supply air openings 10 is heated via at least one heating device and then flows through the material to be dried 8.
- Fig. 2 By way of example, two heating devices in the form of heating registers 12, 14 are shown.
- the drying medium which has absorbed moisture from the material to be dried 8, either via exhaust ports, of which in Fig. 2 only one exhaust port is provided with the reference numeral 16, derived from the drying device 2 to the outside or introduced in the context of the inventive method in at least one of the other drying chambers B, C and D.
- the flow means For circulating the air in the working space 6 of the drying chamber A, the flow means comprise a plurality of circulating air fans, of which in Fig. 2 only a circulating air fan is provided with the reference numeral 18.
- the drying chambers A, B, C and D can be fluidically connected to one another.
- the drying chambers A, B, C and D each have their own flow channel 20a, 20b, 20c and 20d assigned. Respective adjacent flow channels 20a to 20d, so for example, the flow channels 20a and 20b of the drying chambers A and B are connected to each other via an opening which is provided with reference numeral 22 with respect to the flow channels 20a and 20b.
- the flow means For introducing air from the flow channel 20a into the flow channel 20b, the flow means comprise a transverse fan 24, which is arranged in the region of the opening 22 and, for example, as a tube ventilator can be trained.
- the transverse fan 24 is formed reversible and can be controlled for example by means of a frequency converter.
- the opening 22 by a shut-off device, such as a flap or blind 23 (see. Fig. 1 ), be closed.
- a shut-off device such as a flap or blind 23 (see. Fig. 1 .
- the openings 10 previously functioning as supply air openings act as exhaust air openings, while the openings 16 previously functioning as exhaust openings then function as supply air openings.
- Fig. 3 shows a further vertical section through the drying device 2 according to Fig. 1 .
- the flow agents in this embodiment have shut-off devices which are in Fig. 3 are provided with the reference numerals 26, 28.
- the shut-off device 28 is constructed accordingly.
- the shut-off device 26 is formed by a flap which is pivotally mounted and movable in the direction of a double arrow 30.
- Fig. 3 shows the shut-off device 26 in an intermediate position in which it has a metering function with regard to the supply of the drying medium to the working space 6 of the drying chamber A.
- a heater for example in the form of a heater, may be arranged in the flow passage 20a.
- the reference numeral 36 designates a humidifying device, by means of which via the supply air opening 10 supplied drying medium can be moistened, if necessary according to the respective conditions required to set a particular drying climate in the working space 6 of the drying chamber A.
- each drying chamber A, B, C and D can be brought into fluid communication with the associated flow channel 20a, 20b, 20c or 20d by correspondingly actuating the associated shut-off devices, for example the shut-off devices 26 and 28 or be separated from it.
- adjacent flow channels 20a and 20b may be fluidly communicated with each other.
- the drying chambers A, B, C and D can be interconnected in any way fluidically.
- At least one of the drying chambers A, B, C and D is one with a control device (see below the description of Fig. 5 ) in signal transmission connection standing sensor arrangement associated with sensing flow conditions of a flow entering or exiting the drying chamber from the drying chamber.
- a control device see below the description of Fig. 5
- This sensor arrangement will be described below with reference to FIG Fig. 4 explained in more detail.
- Fig. 4 shows a schematic representation of a detail of the drying device 2 in the region of the flow channels 20a, 20b, 20c and 20d.
- the drying chamber A is associated with a sensor arrangement 38a, which has three individual sensors 40, 42, 44 in this embodiment.
- the drying chambers B, C and D sensor assemblies 38b, 38c and 38d assigned and constructed to the sensor assembly 38a accordingly. In the following, only the sensor arrangement 38a will be explained in more detail.
- Fig. 4 It can be seen that the individual sensors 40, 42, 44 are arranged in a band-like manner and thereby forming a sensor band, wherein the sensor arrangements 38a, 38b, 38c and 38d are arranged on a common support 46, which in this embodiment is rod-shaped.
- the carrier 46 is assigned on the one hand a linear drive, so that the carrier 46 in the direction of a double arrow 48 is linearly movable.
- the carrier 46 is associated with a rotary drive, so that the carrier 46 is rotatable about its longitudinal axis.
- the carrier 46 extends through openings formed between the flow channels 20a, 20b, 20c and 20d.
- an outside climate sensor 50 is arranged on the carrier 46.
- the support 46 by a in the outer wall 52 of the drying device 2 formed opening 54 led out. How out Fig. 4 can be seen, the carrier 46 extends through all the flow channels 20a, 20b, 20c and 20d.
- the individual sensors 40, 42, 44 can operate according to any suitable principle of action, for example as temperature and / or humidity sensors. Expediently, the individual sensors 40, 42, 44 are arranged symmetrically to the respective partitions between adjacent chambers.
- the sensor arrangement 38a makes it possible to sense the flow conditions of a flow of the drying medium flowing into or drying out of the drying chamber A into the respective drying chamber. In particular, in this case the temperature and / or humidity of the flowing drying medium can be determined.
- the output signals of the sensor arrangement 38a, 38b, 38c and 38d are used according to the invention in order to control the drying process in the drying device 2.
- Fig. 5 2 shows a highly schematized control-engineering block diagram of the drying device 2.
- Output signals of the sensor arrangements 38a, 38b, 38c and 38d are fed to a control device 56, which may be formed for example by a control computer.
- the controller 56 is also supplied with output signals of the outdoor environmental sensor 50.
- By an arrow 58 is in Fig. 5 indicated that the controller 56 can be supplied with additional signals, in particular output signals of arranged in the utility rooms of the drying chambers A, B, C and D sensors.
- the control device 56 determines during the drying process, a control program for controlling the flow.
- the control program is determined by the control device so that the energy requirement of the entire drying chamber composite 4 or a part thereof is optimized during the drying process, wherein by means of the sensor assemblies 38a, 38b, 38c and 38d, the flow conditions of at least one in a the drying chambers A, B, C and D inflowing or out of the drying chamber A, B, C and D discharged air flow and be included in the determination of the control program.
- the need for heating energy can be optimized.
- Fig. 5 the flow agents are symbolized by their components associated with the drying chamber A, ie by the shut-off devices 26, 28, the recirculating fans 18, the cross-ventilator 24 and the inlet and outlet openings 10, 16 and the blind 23.
- the other drying chambers B, C and D. associated components of the flow agents are of course also controlled by the control device 56 in the context of the method according to the invention.
- By an arrow 60 is in Fig. 5 symbolizes that other components of the drying device 2 can be controlled by the controller 56 according to the respective requirements.
- the control program is determined by the control device such that the energy requirement of the entire drying chamber composite 4 or a part thereof during is optimized in the drying process, wherein the flow conditions of at least one flowing into a drying chamber A, B, C or D or flowing out of the drying device air flow are sensed and included in the determination of the control program.
- the optimization of the energy demand can for example be such that the demand for the heaters of the drying device 2 supplied heating energy is minimized.
- FIGS. 6 and 7 purely exemplary represent possible fluidic interconnections of the drying chambers A, B, C and D in the context of the inventive method. According to the invention, however, any other interconnections are possible.
- Fig. 6 shows a constellation in which the drying process is already completed in the chamber A and storage heat is available in the form of heat, which is stored in the goods to be dried 6, the components of the drying chamber A and in the drying chamber A air.
- This storage heat can be used, for example, to advance a current in the drying chamber C drying process.
- a fluidic connection between the working space 6a of the drying chamber A and the working space 6c of the drying chamber C is produced.
- the shut-off devices 26 and 28 of the drying chamber A are first opened so that their working space 6 is in fluid communication with the flow channel 20a.
- the flow chamber C associated shut-off devices are opened so that their work space 6c fluidly communicates with the associated flow channel 20c.
- the drying chamber B is in a resting phase.
- the flow chamber B associated shut-off 26 b, 28 b closed, which in Fig. 6 indicated by hatching.
- a fluidic connection on the one hand between the flow channels 20a and 20b and on the other hand between the flow channels 20b and 20c made so that air from the drying chamber A flows into the drying chamber C.
- the fact that the work space 6b of the drying chamber B is separated from the flow passage 20b by means of the associated shut-off devices 26b, 28b prevents the air flowing out of the drying chamber A from flowing into the work space 6b of the drying chamber B.
- the flow channel 20d is fluidically separated from the flow channel 20c by either an opening connecting both flow channels is closed by a shut-off or the associated transverse fan 24d is driven accordingly.
- the drying chamber A exchanges air with the drying chamber C, while the drying chamber B is in a quiescent phase and an independent drying process takes place in the drying chamber D.
- the drying process in the drying chamber B in the manner already described above can proceed in the context of an alternating climate.
- Fig. 7 shows another constellation in which the drying chamber B exchanges air with the drying chambers C and D, while in the drying chamber A a this independent drying process takes place.
- Fig. 8A For the sake of explanation, the drying chambers A and B, the - as out Fig. 1 and 2
- the supply air openings 10a and 10b and the exhaust ports 16a, 16b closing shut-off devices can be controlled independently of each other.
- Fig. 8A shows a constellation in which the supply air opening 10a of the drying chamber A is opened, so that fresh air flows into the flow channel 20a. If the transverse fan 24a is operated in a direction of rotation, that the air in the flow passage 20a in Fig.
- the "dead heat” is avoided by closing the exhaust port 16a so that the part of the air flow that would otherwise flow through the exhaust port 16a is conveyed by means of the transverse fan 24a in the flow channel 20b of the drying chamber B, flows into the work space 6b of the drying chamber B and there heats the material to be dried 8b.
- the control of the inlet and outlet openings 10a, 16a and 10b, 16b is carried out by the control device 56, taking into account the respective direction of rotation of the transverse fans 24a, 24b.
- Fig. 8B represents a constellation that differs from the constellation according to Fig. 8A characterized in that the flow direction in the drying chamber A is reversed. For this purpose, the direction of rotation of the circulating air fans 18 is reversed.
- the opening 16a now acts as a supply air opening, while the opening 10a acts as an exhaust port.
- the opening 10a functioning as the exhaust opening is closed, while the opening 16a functioning as the supply air opening is opened.
- the flow conditions in the drying chamber B are compared to Fig. 8A unchanged.
- Fig. 9 shows in a modification of the in Fig. 3 26 shows an embodiment of a flap-like shut-off device 62 according to the invention, which has at least two relatively movable flap parts 64, 66, which release a flow opening of the drying chamber A in an open position and close the flow opening in a closed position.
- the flow opening is the opening 32, via which the work space 6 of the drying chamber A can be connected to the associated flow channel 20a.
- the flap parts 64, 66 are infinitely independently movable and pivotally mounted. By means of associated drive means, the flap parts 64, 66 in the direction of double arrows 68, 70 are pivotable.
- Fig. 9 shows a first constellation in which both flap parts 64, 66 are located between the open position and the closed position and the opening 32 is thus partially opened for a passage of air.
- Fig. 10 shows a second constellation of the position of the flap members 64, 66, in which the flap member 64 is in its open position.
- the flap portion 66 serves in the in Fig. 10 shown position for closing a when using the drying chamber A between the intermediate ceiling 72 and the top of the material to be dried 8 formed free space 74.
- a inflowing drying medium through the space 74 flows and leaves the work space 6 in the flow channel 20a, without having to flow through the material to be dried 8.
- a "bypass" flow through the space 74 which could lead to unnecessary heat loss, thereby reliably avoided.
- Fig. 11 shows a third constellation of the position of the flap parts 64, 66, which differs from the constellation Fig. 10 differs in that the flap member 64 is in an intermediate position in which it acts as a flow baffle.
- Fig. 12 shows the flap parts 64, 66 in their closed position, in which they are substantially horizontal are arranged and close the opening 32. In the closed position, the flap parts 64, 66 bear tightly against one another with their free ends. However, they can overlap.
- the shut-off device 62 serves to increase the energy efficiency of the drying device 2 and at the same time offers manifold possibilities of the flow line.
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Abstract
Description
Die Erfindung betrifft eine Trocknungsvorrichtung der im Oberbegriff des Anspruchs 1 genannten Art zum Trocknen hygroskopischer Güter.The invention relates to a drying device of the type mentioned in the preamble of
Trocknungsvorrichtungen sind allgemein bekannt, beispielsweise durch
Durch
Durch
Der Erfindung liegt die Aufgabe zugrunde, die bekannte Trocknungsvorrichtung weiter zu verbessern.The invention has for its object to further improve the known drying device.
Diese Aufgabe wird durch die im Anspruch 1 angegebene Erfindung gelöst.This object is achieved by the invention defined in
Vorteilhafte und zweckmäßige Weiterbildungen der Trocknungsvorrichtung gemäß Anspruch 1 sind in den Ansprüchen 2 bis 24 angegeben.Advantageous and expedient developments of the drying apparatus according to
Ein erfindungsgemäßes Verfahren ist im Anspruch 25 angegeben. Die Ansprüche 26 bis 34 geben vorteilhafte und zweckmäßige Weiterbildungen des erfindungsgemäßen Verfahrens an.A method according to the invention is specified in claim 25. The
Der Grundgedanke der Erfindung besteht darin, den Energiebedarf des gesamten Trocknungskammer-Verbundes oder zumindest eines Teiles davon während des Trocknungsprozesses zu optimieren.The basic idea of the invention is to optimize the energy requirement of the entire drying chamber composite or at least a part thereof during the drying process.
In einer herkömmlichen Trocknungsvorrichtung mit mehreren Trocknungskammern werden die Trocknungsvorgänge in den einzelnen Trocknungskammern unabhängig voneinander ausgeführt. Hierzu wird zu trocknendes Gut, beispielsweise Schnittholz, in einer Trocknungsphase mit erwärmter Luft beströmt, wobei die Luft Feuchtigkeit aus dem zu trocknenden Gut aufnimmt und abgeführt wird. Entsprechende Trocknungsvorrichtungen werden auch als Zu-/Ablufttrockner bezeichnet. Nachdem die Feuchtigkeit des zu trocknenden Gutes einen bestimmten Wert erreicht hat und die Trocknungsphase damit abgeschlossen ist, beginnt eine Abkühlphase. Während der Abkühlphase wird das getrocknete Gut sukzessive abgekühlt. Wird beispielsweise Holz getrocknet, so kann das Holz am Ende der Trocknungsphase beispielsweise eine Temperatur von 80°C haben. Um zu vermeiden, daß das Holz beschädigt wird, wenn es auf Umgebungstemperatur gebracht wird, beispielsweise beim Öffnen eines Tores der Trocknungsvorrichtung, ist die Abkühlphase häufig zwingend erforderlich.In a conventional drying apparatus having a plurality of drying chambers, the drying operations in the individual drying chambers are carried out independently of each other. For this purpose, the material to be dried, for example lumber, is flown in a drying phase with heated air, wherein the air absorbs moisture from the material to be dried and is removed. Corresponding drying devices are also referred to as supply / exhaust air dryer. After the moisture of the material to be dried has reached a certain value and the drying phase is completed, a cooling phase begins. During the cooling phase, the dried material is successively cooled. If, for example, wood is dried, the wood may, for example, have a temperature of 80 ° C. at the end of the drying phase. In order to avoid damage to the wood when it is brought to ambient temperature, for example when opening a door of the drying device, the cooling phase is often mandatory.
Die am Ende der Trocknungsphase in der jeweiligen Trocknungskammer gespeicherte Wärme wird bei den bekannten Verfahren nicht genutzt.The at the end of the drying phase in the respective Drying chamber stored heat is not used in the known methods.
Im Rahmen der erfindungsgemäß vorgesehenen Optimierung des Energiebedarfes des Trockner-Verbundes kann beispielsweise und insbesondere diese Speicherwärme genutzt werden. Ist in einer Trocknungskammer eines Trocknungskammer-Verbundes ein Trocknungsvorgang abgeschlossen, so kann die dann in dieser Trocknungskammer gespeicherte Wärme dadurch genutzt werden, daß Luft aus dieser Trocknungskammer in eine andere Trocknungskammer des Verbundes geleitet wird, in der sich das zu trocknende Gut noch in der Trocknungsphase befindet. Hierbei wird aus der Trocknungskammer, in der der Trocknungsvorgang bereits abgeschlossen ist, Speicherwärme genutzt, die nicht nur in dem getrockneten Gut und in der in der Trocknungskammer enthaltenen Luft gespeichert ist, sondern auch in Bestandteilen der Trocknungskammer, beispielsweise deren Wandungen.Within the scope of the inventively provided optimization of the energy requirement of the dryer composite, for example, and in particular this storage heat can be used. If a drying process is completed in a drying chamber of a drying chamber composite, then the heat stored in this drying chamber can be used by passing air from this drying chamber into another drying chamber of the composite in which the material to be dried is still in the drying phase located. In this case, from the drying chamber, in which the drying process is already completed, used storage heat, which is stored not only in the dried material and in the air contained in the drying chamber, but also in components of the drying chamber, such as their walls.
Im Vergleich zu herkömmlichen Trocknungsvorrichtungen, bei denen in gewissem Maße eine Wärmerückgewinnung über externe Wärmetauscher ausgeführt wird, ergibt sich erfindungsgemäß eine vergleichbare Energieeffizienz, die aber mit einem viel geringeren apparativen Aufwand realisiert wird. Externe Wärmetauscher könnten zwar noch zusätzlich installiert werden. Dies würde die Wärmeeinsparung jedoch nur geringfügig erhöhen und damit wegen des hohen apparativen Aufwandes nur in Sonderfällen sinnvoll sein. Da ein wichtiger Teil des Wärmebedarfs der Trocknungskammern somit über Wärme gedeckt werden kann, die in dem Trocknungskammer-Verbund ohnehin enthalten ist, ist es nicht erforderlich, diesen Wärmebedarf durch Zuführen von zusätzlicher Energie zu decken.Compared to conventional drying devices, in which a degree of heat recovery via external heat exchangers is carried out according to the invention results in a comparable energy efficiency, but which is realized with a much lower cost of equipment. External heat exchangers could still be installed additionally. However, this would increase the heat savings only slightly and thus be useful only in special cases because of the high equipment cost. Since an important part of the heat requirement of the drying chambers can thus be covered by heat, which is contained in the drying chamber composite in any case, it is not necessary to cover this heat requirement by supplying additional energy.
Bei der erfindungsgemäßen Trocknungsvorrichtung ist wenigstens einer der Trocknungskammern eine mit der Steuerungseinrichtung in Signalübertragungsverbindung stehende Sensoranordnung zugeordnet zum Abfühlen von Strömungsverhältnissen einer in die Trocknungskammer einströmenden Strömung. Hierbei weist die Sensoranordnung wenigstens zwei vorzugsweise in Strömungsrichtung zueinander beabstandete Sensoren auf. Beispielsweise und insbesondere weist hierbei die Sensoranordnung eine Mehrzahl von bandartig aufeinanderfolgenden und dadurch ein Sensorband bildenden Einzelsensoren auf.In the drying device according to the invention At least one of the drying chambers is associated with a sensor arrangement in signal transmission connection with the control device for sensing flow conditions of a flow flowing into the drying chamber. In this case, the sensor arrangement has at least two sensors which are preferably spaced apart from one another in the flow direction. By way of example and in particular, in this case, the sensor arrangement has a plurality of individual sensors which are band-like and thus form a sensor band.
Beispielsweise kann die Sensoranordnung Temperatur- und/oder Feuchtigkeitssensoren aufweisen, die in Strömungsrichtung der einströmenden Strömung zueinander beabstandet sind. Über die zueinander beabstandeten Einzelsensoren kann bezüglich eines Strömungsparameters der jeweiligen Strömung ein Gradient ermittelt werden, beispielsweise ein Temperatur-und/oder Luftfeuchtigkeitsgradient. Anhand des Gradienten kann dann beispielsweise ermittelt werden, ob Luft mit einer gewünschten Temperatur bzw. Luftfeuchtigkeit in die Trocknungskammer einströmt und wie weit bereits eine Vermischung dieses Stromes mit der Kammerluft an bestimmten Orten der Kammer erfolgt ist. Auf diese Weise können mit hoher Genauigkeit Daten ermittelt werden, die eine besonders präzise Steuerung des Trocknungsprozesses ermöglichen. Die präzise Steuerung des Trocknungsprozesses ermöglicht eine Optimierung des Wärmebedarfes des Trocknungskammer-Verbundes während eines Trocknungsprozesses.For example, the sensor arrangement may comprise temperature and / or humidity sensors which are spaced apart in the flow direction of the inflowing flow. With respect to a flow parameter of the respective flow, a gradient, for example a temperature and / or humidity gradient, can be determined via the individual sensors spaced apart from one another. On the basis of the gradient can then be determined, for example, whether air flows into the drying chamber with a desired temperature or humidity and how far has already done this mixing with the chamber air at certain locations of the chamber. In this way, data can be determined with high accuracy, which allows a particularly precise control of the drying process. The precise control of the drying process allows an optimization of the heat requirement of the drying chamber composite during a drying process.
Beispielsweise kann eine Vielzahl von Einzelsensoren an einem stabartigen Träger angeordnet sein, wobei der Träger entlang seiner Längsachse linear beweglich und/oder drehbar angeordnet sein kann. Durch entsprechende Bewegung des Trägers können die Sensoren an eine beliebige geeignete Stelle gebracht werden, um die dort herrschenden Klimaverhältnisse abzufühlen.For example, a plurality of individual sensors may be arranged on a rod-like carrier, wherein the carrier may be arranged to be linearly movable and / or rotatable along its longitudinal axis. By appropriate movement of the carrier, the sensors to a Any suitable place be brought to feel the prevailing climate conditions there.
Erfindungsgemäß ist es grundsätzlich ausreichend, wenn an dem Träger lediglich zwei Sensoren angeordnet sind, die durch entsprechende Bewegung des Trägers jeweils an die gewünschte Stelle gebracht werden können. Um eine gleichzeitige und räumlich hoch aufgelöste Erfassung der Klimaverhältnisse in der Trocknungsvorrichtung zu ermöglichen, ist es vorteilhaft, wenn an dem Träger eine Vielzahl von Einzelsensoren angeordnet ist. Die räumliche Auflösung der erfaßten Daten ist hierbei umso höher, je höher die Anzahl von ein Sensorband bildenden Einzelsensoren ist.According to the invention, it is basically sufficient if only two sensors are arranged on the carrier, which can be brought by appropriate movement of the carrier in each case to the desired location. In order to enable a simultaneous and spatially highly resolved detection of the climatic conditions in the drying device, it is advantageous if a plurality of individual sensors is arranged on the carrier. The spatial resolution of the detected data is the higher, the higher the number of sensor bands forming individual sensors.
Durch die erfindungsgemäße Optimierung des Wärmebedarfes ist die Wirtschaftlichkeit eines Trocknungskammer-Verbundes wesentlich erhöht worden. So ist beispielsweise mittels des erfindungsgemäßen Verfahrens eine Einsparung an Heizenergie in einer Größenordnung von beispielsweise 10 bis 22% ermöglicht. Nachdem alleine in Deutschland derzeit etwa 30.000 Trocknungskammern betrieben werden, ermöglicht die Erfindung die Einsparung erheblicher Mengen an Heizenergie.The economy of a drying chamber composite has been substantially increased by the optimization of the heat demand according to the invention. Thus, for example, by means of the method according to the invention a saving of heating energy in the order of, for example, 10 to 22% possible. After alone in Germany currently about 30,000 drying chambers are operated, the invention allows the saving of significant amounts of heating energy.
Die Einsparung an Heizenergie führt unmittelbar zu geringeren CO2-Emissionen, so daß das erfindungsgemäße Verfahren-nicht nur besonders ökonomisch, sondern auch besonders umweltfreundlich ist.The saving of heating energy leads directly to lower CO 2 emissions, so that the inventive method-not only particularly economical, but also very environmentally friendly.
Aufgrund der Einsparung von Energie und der Verringerung von CO2-Emissionen weist die Erfindung eine hohe soziale Nützlichkeit auf.Due to the saving of energy and the reduction of CO 2 emissions, the invention has a high social utility.
Im Rahmen der erfindungsgemäß vorgesehenen Optimierung des Energiebedarfes kann nicht nur Heizenergie eingespart werden, sondern beispielsweise auch Wasser. Während eines Trocknungsvorganges kann es zunächst erforderlich sein, das zu trocknende Gut zu befeuchten. Zu diesem Zweck wird in herkömmlichen Trocknungsvorrichtungen das zu trocknende Gut mit Frischwasser befeuchtet. Bei dem erfindungsgemäßen Verfahren kann eine Befeuchtung beispielsweise dadurch erfolgen, daß feuchte Luft, die im Rahmen eines Trocknungsvorganges in einer der Trocknungskammern des Verbundes vorhanden ist, in eine andere Trocknungskammer geleitet wird, in der eine Befeuchtung erforderlich ist. Die Verwendung von Frischwasser erübrigt sich damit zumindest teilweise. Dies spart Kosten und entlastet die Umwelt.As part of the inventively provided optimization of energy requirements not only heating energy can be saved, but for example, water. During a drying process, it may first be necessary to moisten the material to be dried. For this purpose, the material to be dried is moistened with fresh water in conventional drying devices. In the method according to the invention, a moistening can be carried out, for example, by passing moist air, which is present in one of the drying chambers of the composite as part of a drying process, into another drying chamber in which moistening is required. The use of fresh water is thus at least partially unnecessary. This saves costs and relieves the environment.
Unter einer Optimierung des Energiebedarfes wird erfindungsgemäß verstanden, daß der Trocknungsprozeß, der aus Trocknungsvorgängen besteht, die in den einzelnen Trocknungskammern des Trocknungskammer-Verbundes ablaufen, so gesteuert wird, daß möglichst wenig Energie verbraucht wird. Wie hoch im Vergleich zu bekannten Verfahren bzw. Vorrichtungen die tatsächliche Energieersparnis ist, hängt von den jeweiligen Gegebenheiten des Trocknungskammer-Verbundes und den Parametern der einzelnen Trocknungsvorgänge ab. Die von der Steuerungseinrichtung auszuführende Optimierungsaufgabe hängt wiederum davon ab, auf welche Energieart sich die Optimierung bezieht. So können sich beispielsweise unterschiedliche Steuerungsprogramme ergeben, je nachdem hinsichtlich welcher Energieart eine Optimierung ausgeführt wird. Beispielsweise kann sich bei einer Optimierung hinsichtlich des Bedarfes an Heizenergie ein anderes Steuerungsprogramm ergeben, als bei einer Optimierung hinsichtlich des Bedarfes an Wasser.Under an optimization of the energy requirement is understood according to the invention that the drying process, which consists of drying processes that take place in the individual drying chambers of the drying chamber composite, is controlled so that as little energy is consumed. How high the actual energy savings compared to known methods or devices depends on the particular conditions of the drying chamber composite and the parameters of the individual drying operations. The optimization task to be performed by the control device, in turn, depends on which type of energy the optimization relates to. For example, different control programs can result, depending on which type of energy optimization is performed. For example, an optimization in terms of the demand for heating energy may result in a different control program than in an optimization with regard to the demand for water.
Bei dem erfindungsgemäßen Verfahren bzw. der erfindungsgemäßen Vorrichtung können die Trocknungskammern eines Trocknungskammer-Verbundes entsprechend den jeweiligen Anforderungen in beliebiger Weise miteinander kommunizieren. So ist es erfindungsgemäß möglich, daß eine Trocknungskammer mit einer einzelnen oder mehreren der übrigen Trocknungskammern kommuniziert. Die strömungstechnische Verschaltung der Trocknungskammern miteinander kann hierbei während des Trocknungsvorganges entsprechend dem Steuerungsprogramm zeitschnell verändert werden. Im Ergebnis kann bei dem erfindungsgemäßen Verfahren bzw. der erfindungsgemäßen Vorrichtung somit grundsätzlich jede der Trocknungskammern mit jeder anderen Trocknungskammer strömungstechnisch kommunizieren.In the method according to the invention or the device according to the invention, the drying chambers of a drying chamber composite can communicate with one another in any desired manner in accordance with the respective requirements. So it is possible according to the invention a drying chamber communicates with one or more of the remaining drying chambers. The fluidic interconnection of the drying chambers together can be changed during the drying process in accordance with the control program in a timely manner. As a result, in the method according to the invention or the apparatus according to the invention, basically, each of the drying chambers can thus communicate with each other drying chamber in terms of flow.
Erfindungsgemäß kann beispielsweise eine der Trocknungskammern einem Wechselklima unterworfen werden, indem die Umwälzung und Erwärmung bzw. die Zufuhr warmer Trocknungsluft in dieser Trocknungskammer unterbrochen wird. Erfahrungsgemäß führt diese Unterbrechung nicht zu einer Unterbrechung des Trocknungsvorganges. Vielmehr setzt sich der Trocknungsvorgang auch nach Unterbrechung der Warmluftzufuhr zum zu trocknenden Gut über einen bestimmten Zeitraum fort.According to the invention, for example, one of the drying chambers can be subjected to an alternating climate by interrupting the circulation and heating or the supply of warm drying air in this drying chamber. Experience has shown that this interruption does not interrupt the drying process. Rather, the drying process continues even after interrupting the supply of hot air to be dried material over a certain period of time.
Erfindungsgemäß kann die Optimierung des Energiebedarfes für den gesamten Trocknungskammer-Verbund ausgeführt werden. Hierbei werden die in sämtlichen Trocknungskammern laufenden Trocknungsvorgänge in die Optimierung einbezogen. Es ist erfindungsgemäß jedoch auch möglich, lediglich einzelne Trocknungskammern in die Optimierung einzubeziehen, beispielsweise dann, wenn in einer Trocknungskammer ein hinsichtlich des zu trocknenden Gutes besonders sensibler Trocknungsvorgang läuft, bei dem die Trocknungsparameter besonders exakt eingehalten werden müssen. Es ist erfindungsgemäß jedoch auch möglich, in dem Trocknungskammer-Verbund wenigstens einen Unterverbund zu bilden, für den dann eine Optimierung des Energiebedarfes ausgeführt wird. Hierbei kann durch Optimierung des Energiebedarfes für den Unterverbund bezogen auf den gesamten Trocknungskammer-Verbund eine Teiloptimierung des Energiebedarfes ausgeführt werden. Die Bildung von Unterverbünden und die Optimierung des Energiebedarfes für den jeweiligen Unterverbund kann jedoch auch verwendet werden, um für den gesamten Trocknungskammer-Verbund eine Optimierung des Energiebedarfes auszuführen.According to the invention, the optimization of the energy requirement for the entire drying chamber composite can be carried out. In this case, the drying processes running in all drying chambers are included in the optimization. However, it is according to the invention also possible to include only individual drying chambers in the optimization, for example, when in a drying chamber a particularly sensitive drying process with respect to the material to be dried, in which the drying parameters must be kept particularly accurate. However, it is also possible according to the invention to form at least one subassembly in the drying chamber composite, for which an optimization of the energy requirement is then carried out. This can be done by optimizing the energy requirement for the subcompass based on the entire drying chamber composite, a partial optimization of the energy requirements are performed. However, the formation of sub-networks and the optimization of the energy requirements for the respective sub-network can also be used to optimize the energy requirement for the entire drying chamber network.
Die Trocknungskammern der erfindungsgemäßen Trocknungsvorrichtung können auf beliebige Weise beschickt werden. Beispielsweise kann erfindungsgemäß auch eine Gleiswagenbeschickung verwendet werden.The drying chambers of the drying device according to the invention can be charged in any manner. For example, according to the invention also a track car load can be used.
Als Trocknungsmedium wird erfindungsgemäß vorzugsweise Luft verwendet. Es ist jedoch auch möglich, anstelle von oder zusätzlich zu Luft andere gasförmige Trocknungsmedien zu verwenden.As the drying medium according to the invention preferably air is used. However, it is also possible to use other gaseous drying media instead of or in addition to air.
Das erfindungsgemäße Verfahren ist besonders vorteilhaft im Zusammenhang mit der Trocknung beliebiger hygroskopischer Güter verwendbar. Beispielsweise und insbesondere kann es sich bei dem zu trocknenden Gut um Holz, insbesondere Schnittholz, handeln.The process according to the invention can be used particularly advantageously in connection with the drying of any hygroscopic goods. By way of example and in particular, the material to be dried may be wood, in particular lumber.
Bei der Steuerungseinrichtung kann es sich erfindungsgemäß um einen Rechner, insbesondere einen PC, handeln. Entsprechende Rechner stehen mit hoher Rechenleistung zur Verfügung und sind zur Ausführung auch komplexer Optimierungsaufgaben geeignet.According to the invention, the control device can be a computer, in particular a PC. Corresponding computers are available with high computing power and are suitable for the execution of even complex optimization tasks.
Die Klappenteile können erfindungsgemäß einteilig oder mehrteilig ausgebildet sein. Erstrecken sich die Klappenteile in Richtung ihrer Schwenkachse beispielsweise entlang der Breitenausdehnung einer Trocknungskammer, so können sie beispielsweise entlang dieser Breitenausdehnung mehrteilig ausgebildet sein. Die so gebildeten Einzel-Klappenteile können wiederum unabhängig voneinander beweglich sein.The flap parts may be formed according to the invention in one or more parts. If the flap parts extend in the direction of their pivot axis, for example along the width dimension of a drying chamber, then they can be formed in several parts, for example along this width extension. The individual flap parts formed in this way can again be movable independently of one another.
Das erfindungsgemäße Trocknungsverfahren ist bereits bei einem lediglich aus zwei Trocknungskammern bestehenden Trocknungskammer-Verbund vorteilhaft. Seine Vorteile erschließen sich jedoch besonders bei Trocknungskammer-Verbünden, die mehr als zwei Trocknungskammern aufweisen. Die Anzahl der Trocknungskammern ist hierbei innerhalb weiter Grenzen wählbar. Die Trocknungskammern, die nachfolgend auch kurz als Kammern bezeichnet werden, können in Reihe und/oder im Block angeordnet sein, wobei eine Beschickung des Trocknungskammer-Verbundes von einer Seite oder von beiden Seiten möglich sein kann.The drying process according to the invention is already advantageous in a drying chamber composite consisting of only two drying chambers. However, its advantages are particularly evident in drying chamber assemblies which have more than two drying chambers. The number of drying chambers can be selected within wide limits. The drying chambers, which are also referred to below as chambers, may be arranged in series and / or in the block, wherein a loading of the drying chamber composite from one side or from both sides may be possible.
Erfindungsgemäß ist es grundsätzlich ausreichend, wenn die Sensoranordnung lediglich zwei Einzelsensoren aufweist. Um die räumliche Auflösung bei der Erfassung der Strömungsverhältnisse zu erhöhen, sieht eine vorteilhafte Weiterbildung der Erfindung vor, daß die Sensoranordnung eine Mehrzahl von bandartig aufeinanderfolgenden und dadurch ein Sensorband bildenden Einzelsensoren aufweist.According to the invention, it is basically sufficient if the sensor arrangement has only two individual sensors. In order to increase the spatial resolution during the detection of the flow conditions, an advantageous development of the invention provides that the sensor arrangement has a plurality of band-like successive individual sensors that form a sensor band.
Die Einzelsensoren können nach einem beliebigen geeigneten Wirkprinzip arbeiten. Vorzugsweise kann hierbei wenigstens ein Einzelsensor ein Temperatursensor und/oder ein Luftfeuchtigkeitssensor und/oder ein Luftgeschwindigkeitssensor und/oder ein Druckdifferenzsensor sein, wie dies eine andere vorteilhafte Weiterbildung der Erfindung vorsieht.The individual sensors can work according to any suitable operating principle. In this case, at least one individual sensor may preferably be a temperature sensor and / or an air humidity sensor and / or an air speed sensor and / or a pressure difference sensor, as provided by another advantageous development of the invention.
Erfindungsgemäß kann eine Sensoranordnung nicht gleichartige, also nach unterschiedlichen Wirkprinzipien arbeitende Einzelsensoren aufweisen. Um bei der Erfassung der Strömungsverhältnisse einen Gradienten zu ermitteln, beispielsweise einen Temperatur- und/oder Luftfeuchtigkeitsgradienten, sieht eine andere vorteilhafte Weiterbildung der Erfindung vor, daß die Sensoranordnung wenigstens zwei gleichartige Sensoren aufweist. Unter gleichartigen Sensoren werden in diesem Kontext Sensoren verstanden, die nach dem gleichen Wirkprinzip arbeiten, also beispielsweise eine Temperaturmessung ausführen.According to the invention, a sensor arrangement may not have similar, ie operating according to different principles of action individual sensors. In order to determine a gradient in the detection of the flow conditions, for example a temperature and / or humidity gradient, another advantageous development of the invention provides that the sensor arrangement comprises at least two similar sensors having. Under similar sensors are understood in this context sensors that operate on the same principle of action, so for example, perform a temperature measurement.
Die Zuordnung der Sensoranordnung bzw. der Sensoranordnungen zu den Trocknungskammern ist innerhalb weiter Grenzen wählbar. Insoweit sehen vorteilhafte Weiterbildungen der Erfindung vor, daß jeder Trocknungskammer eine eigene Sensoranordnung zugeordnet ist und/oder daß wenigstens zwei Trocknungskammern eine gemeinsame Sensoranordnung zugeordnet ist. Im Minimalfall kann beispielsweise eine Sensoranordnung mit lediglich zwei Einzelsensoren zwei Trocknungskammern zugeordnet sein, so daß der eine Einzelsensor der einen und der andere Einzelsensor der anderen Trocknungskammer zugeordnet ist. Soweit jeder Trocknungskammer eine eigene Sensoranordnung oder wenigstens einem Teil der Trocknungskammern eine eigene Sensoranordnung zugeordnet ist, ist es zweckmäßig, wenn die unterschiedlichen Trocknungskammern zugeordneten Einzelsensoren gleichartig ausgebildet sind, also nach dem gleichen Wirkprinzip arbeiten.The assignment of the sensor arrangement or the sensor arrangements to the drying chambers can be selected within wide limits. In that regard, advantageous developments of the invention provide that each drying chamber is assigned its own sensor arrangement and / or that at least two drying chambers is assigned a common sensor arrangement. In the minimum case, for example, a sensor arrangement with only two individual sensors can be assigned to two drying chambers, so that the one individual sensor is assigned to one and the other individual sensor to the other drying chamber. Insofar as each drying chamber is assigned its own sensor arrangement or at least part of the drying chambers its own sensor arrangement, it is expedient if the individual drying sensors assigned to different drying chambers are of the same design, ie operate according to the same operating principle.
Die Einzelsensoren können an beliebiger geeigneter Stelle in den Trocknungskammern sowohl in dem jeweiligen Nutzraum der Trocknungskammer als auch in wenigstens einem die Trocknungskammern miteinander verbindenden Strömungskanal angeordnet sein, wobei die Einzelsensoren auf beliebige geeignete Weise an Bauteilen der Trocknungskammer angeordnet sein können. Eine vorteilhafte Weiterbildung der Erfindung sieht insoweit vor, daß eine Mehrzahl von Einzelsensoren an einem gemeinsamen Träger angeordnet ist.The individual sensors can be arranged at any suitable point in the drying chambers both in the respective working chamber of the drying chamber and in at least one flow channel interconnecting the drying chambers, wherein the individual sensors can be arranged in any suitable manner on components of the drying chamber. An advantageous development of the invention provides insofar as a plurality of individual sensors is arranged on a common carrier.
Um zeitlich aufeinanderfolgend an unterschiedlichen Stellen des Trocknungskammer-Verbundes Messungen hinsichtlich der Strömungsverhältnisse auszuführen, sieht eine vorteilhafte Weiterbildung der vorgenannten Ausführungsform vor, daß der Träger beweglich angeordnet ist.To temporally successive measurements at different points of the drying chamber composite With regard to the flow conditions, provides an advantageous development of the aforementioned embodiment, that the carrier is arranged to be movable.
Eine andere vorteilhafte Weiterbildung der Ausführungsform mit dem Träger sieht vor, daß derselbe stangenartig ausgebildet ist. Beispielsweise kann der Träger durch ein Rohr gebildet sein, an dessen Außenfläche eine Mehrzahl von Einzelsensoren angeordnet ist und in dessen Inneren elektrische Leitungen der Einzelsensoren geführt sind.Another advantageous embodiment of the embodiment with the carrier provides that the same is rod-like. For example, the carrier may be formed by a tube, on whose outer surface a plurality of individual sensors is arranged and in the interior of which electrical lines of the individual sensors are guided.
Eine vorteilhafte Weiterbildung der Ausführungsform mit dem beweglichen Träger sieht vor, daß der Träger linear beweglich und/oder drehbar ist, wobei dem Träger wenigstens ein Linearantrieb und/oder wenigstens ein Drehantrieb zugeordnet sein kann. In Kombination der vorgenannten Ausführungsform kann eine Mehrzahl von Einzelsensoren an einem stangenartigen Träger angeordnet sein, der sowohl linear beweglich als auch drehbar ist. Auf diese Weise kann die Position der Einzelsensoren und damit der Sensoranordnung(en) innerhalb weiter Grenzen verändert werden.An advantageous development of the embodiment with the movable support provides that the carrier is linearly movable and / or rotatable, wherein the carrier at least one linear drive and / or at least one rotary drive can be assigned. In combination of the aforementioned embodiment, a plurality of individual sensors may be disposed on a rod-like carrier which is both linearly movable and rotatable. In this way, the position of the individual sensors and thus of the sensor arrangement (s) can be varied within wide limits.
Um die Energieeffizienz der erfindungsgemäßen Vorrichtung weiter zu steigern, sieht eine vorteilhafte Weiterbildung der Erfindung wenigstens einen außerhalb der Trocknungskammern angeordneten Außenklimasensor vor, der vorzugsweise an dem Träger angeordnet ist. Auf diese Weise besteht die Möglichkeit, das Außenklima in die Steuerung der Trocknungsvorrichtung einzubeziehen und sich während des Trocknungsprozesses ergebende Änderungen des Außenklimas bei der Steuerung zu berücksichtigen.In order to further increase the energy efficiency of the device according to the invention, an advantageous development of the invention provides at least one outside climate sensor arranged outside the drying chambers, which is preferably arranged on the carrier. In this way it is possible to include the outside climate in the control of the drying device and to take into account during the drying process resulting changes in the external climate in the control.
Bei der Ausführungsform mit ein Sensorband bildenden Einzelsensoren sieht eine vorteilhafte Weiterbildung vor, daß wenigstens zwei zueinander beabstandete Sensorbänder vorgesehen sind. Bei dieser Ausführungsform ist es beispielsweise möglich, daß wenigstens ein Sensorband im wesentlichen horizontal und/oder wenigstens ein Sensorband im wesentlichen vertikal angeordnet ist. Beispielsweise ist es möglich, in einem die Trocknungskammern miteinander verbindenden Strömungskanal ein im wesentlichen horizontal angeordnetes Sensorband vorzusehen, während im Nutzraum wenigstens einer Trocknungskammer ein im wesentlichen vertikal angeordnetes Sensorband vorgesehen ist. Es ist erfindungsgemäß auch möglich, im Nutzraum wenigstens einer Trocknungskammer ein im wesentlichen horizontal angeordnetes Sensorband vorzusehen. In diesem Kontext sehen andere vorteilhafte Weiterbildungen der Erfindung vor, daß wenigstens ein Sensorband in einem wenigstens zwei Trocknungskammern verbindenden Strömungskanal angeordnet ist und/oder daß wenigstens ein Sensorband in einem Nutzraum einer Trocknungskammer angeordnet ist.In the embodiment with a sensor band forming individual sensors provides an advantageous development in that at least two mutually spaced sensor strips are provided. In this embodiment, for example, it is possible for at least one sensor band to be arranged essentially horizontally and / or at least one sensor band to be substantially vertical. For example, it is possible to provide a substantially horizontally arranged sensor band in a flow channel interconnecting the drying chambers, while in the useful space of at least one drying chamber a substantially vertically arranged sensor band is provided. It is also possible according to the invention to provide a substantially horizontally arranged sensor strip in the working space of at least one drying chamber. In this context, other advantageous developments of the invention provide that at least one sensor band is arranged in a flow channel connecting at least two drying chambers and / or that at least one sensor band is arranged in a useful space of a drying chamber.
Eine andere vorteilhafte Weiterbildung der Ausführungsform mit wenigstens zwei Sensorbändern sieht vor, daß wenigstens zwei Sensorbänder im wesentlichen senkrecht zueinander angeordnet sind.Another advantageous development of the embodiment with at least two sensor bands provides that at least two sensor bands are arranged substantially perpendicular to each other.
Eine andere Weiterbildung der Erfindung sieht vor, daß die durch die Steuerungseinrichtung ansteuerbaren Beströmungsmittel
- wenigstens einen Querventilator zum Einleiten von Luft aus wenigstens einer der Trocknungskammern in wenigstens eine andere Trocknungskammer und/oder
- wenigstens ein Umluftventilator zum Umwälzen der Luft innerhalb einer zugeordneten Trocknungskammer und/oder
- pro Trocknungskammer wenigstens eine verschließbare Zuluftöffnung zur Zuführung von Frischluft zu der Trocknungskammer und wenigstens eine verschließbare Abluftöffnung zur Abführung von Abluft aus der Trocknungskammer und/oder
- wenigstens eine Absperreinrichtung zum Trennen des Nutzraumes einer Trocknungskammer von einem Strömungskanal, über den der Trocknungskammer Luft aus wenigstens einer anderen Trocknungskammer zuführbar ist oder zugeführt wird,
- at least one transverse fan for introducing air from at least one of the drying chambers into at least one other drying chamber and / or
- at least one circulating air fan for circulating the air within an associated drying chamber and / or
- at least one closable per drying chamber Supply air opening for supplying fresh air to the drying chamber and at least one closable exhaust air opening for the discharge of exhaust air from the drying chamber and / or
- at least one shut-off device for separating the useful space of a drying chamber from a flow channel, via which the drying chamber is supplied or is supplied with air from at least one other drying chamber,
Die Absperreinrichtung kann hierbei insbesondere stufenlos zwischen einer Schließposition, in der sie den Nutzraum der Trocknungskammer von dem Strömungskanal trennt, und einer Offenposition, in der die Trocknungskammer in strömungstechnischer Verbindung mit dem Strömungskanal steht, beweglich sein. In Zwischenstellungen übernimmt die Absperreinrichtung dann eine Dosierfunktion.The shut-off device can in this case in particular be infinitely variable between a closed position in which it separates the useful space of the drying chamber from the flow channel and an open position in which the drying chamber is in fluid communication with the flow channel. In intermediate positions, the shut-off device then assumes a metering function.
Eine vorteilhafte und zweckmäßige Weiterbildung der Absperreinrichtung sieht vor, daß wenigstens eine Trocknungskammer wenigstens eine klappenartige Absperreinrichtung aufweist, die wenigstens zwei relativ zueinander bewegliche Klappenteile aufweist, die in einer Offenstellung eine Strömungsöffnung der Trockenkammer freigeben und in einer Schließstellung die Strömungsöffnung verschließen. Dadurch, daß die Absperreinrichtung wenigstens zwei Klappenteile aufweist, kann sie verschiedene Funktionen ausführen. Beispielsweise kann wenigstens eines der Klappenteile in der Offenstellung als Strömungsleitblech dienen. Ein anderes Klappenteil kann beispielsweise dazu dienen, einen bei Benutzung der Trocknungskammer zwischen der Oberseite des zu trocknenden Gutes und der Decke oder Zwischendecke der Trocknungskammer verbleibenden Freiraum zu verschließen und dadurch zu verhindern, daß dieser Raum einen Bypass für eine in die Kammer einströmende Strömung bildet. Damit ist sichergestellt, daß die Strömung des Trocknungsmediums die Trocknungskammer erst verläßt, nachdem sie das zu trocknende Gut durchströmt hat. Die im Anspruch 19, dem eine eigenständige erfinderische Bedeutung zukommt, definierte Absperreinrichtung ist somit multifunktional gestaltet.An advantageous and expedient development of the shut-off device provides that at least one drying chamber has at least one flap-like shut-off device which has at least two relatively movable flap parts which release a flow opening of the drying chamber in an open position and close the flow opening in a closed position. The fact that the shut-off device has at least two flap parts, it can perform various functions. For example, serve at least one of the flap parts in the open position as a flow baffle. Another flap part may serve, for example, to close a remaining when using the drying chamber between the top of the material to be dried and the ceiling or false ceiling of the drying chamber clearance and thereby prevent this space forms a bypass for an inflowing into the chamber flow. This ensures that the flow of the drying medium leaves the drying chamber only after it has flowed through the material to be dried. The in claim 19, which plays an independent inventive significance, defined shut-off is thus designed multifunctional.
Eine vorteilhafte Weiterbildung der vorgenannten Ausführungsform sieht vor, daß die Absperreinrichtung zum Trennen des Nutzraumes einer Trocknungskammer von einem Strömungskanal, über den der Trocknungskammer Trocknungsmedium aus wenigstens einer anderen Trocknungskammer zuführbar ist oder zugeführt wird, ausgebildet ist.An advantageous development of the aforementioned embodiment provides that the shut-off device for separating the useful space of a drying chamber from a flow channel, via which the drying chamber drying medium from at least one other drying chamber is supplied or is supplied is formed.
Die Klappenteile können entsprechend den jeweiligen Anforderungen in beliebiger geeigneter Weise beweglich sein. Eine vorteilhafte und zweckmäßige Weiterbildung sieht insoweit vor, daß die Klappenteile schwenkbar gelagert sind.The flap parts can be movable according to the respective requirements in any suitable manner. An advantageous and expedient development provides so far that the flap parts are pivotally mounted.
Grundsätzlich kann die Bewegung der Klappenteile aneinander gekoppelt sein. Eine vorteilhafte Weiterbildung sieht jedoch insoweit vor, daß die Klappenteile unabhängig voneinander beweglich sind. Auf diese Weise sind die Möglichkeiten der Strömungsleitung durch die Klappenteile nochmals erweitert.In principle, the movement of the flap parts can be coupled to each other. An advantageous development, however, provides insofar as the flap parts are movable independently of each other. In this way, the possibilities of the flow line through the flap parts are further expanded.
Eine außerordentlich vorteilhafte Weiterbildung der Absperreinrichtung sieht vor, daß wenigstens eines der Klappenteile zum Verschließen eines bei Benutzung der Trocknungskammern zwischen deren Decke oder Zwischendecke und dem zu trocknenden Gut gebildeten Freiraumes ausgebildet ist. Auf diese Weise ist eine "Bypass-Strömung" des Trocknungsmediums durch den Freiraum von einer Eintrittsöffnung direkt zu einer Austrittsöffnung vermieden und sichergestellt, daß das Trocknungsmedium das zu trocknende Gut durchströmt. Auf diese Weise ist die Energieeffizienz der erfindungsgemäßen Vorrichtung weiter verbessert.An extraordinarily advantageous development of the shut-off device provides that at least one of the flap parts for closing a when using the drying chambers between the ceiling or false ceiling and the space to be dried formed free space is formed. In this way, a "bypass flow" of the drying medium is avoided by the free space from an inlet opening directly to an outlet opening and ensures that the drying medium flows through the material to be dried. In this way, the energy efficiency of the device according to the invention is further improved.
Eine andere Weiterbildung der Erfindung sieht vor, daß wenigstens ein Klappenteil im Bereich der Decke oder Zwischendecke angelenkt ist.Another development of the invention provides that at least one flap part is articulated in the ceiling or false ceiling.
Bei dem erfindungsgemäßen Verfahren kann die Energieeffizienz nicht nur dadurch gesteigert werden, daß Speicherwärme aus den einzelnen Trocknungskammern genutzt wird. Insbesondere ermöglicht es das erfindungsgemäße Verfahren, sogenannte "Totwärme" zu vermeiden. Hierbei wird unter "Totwärme" folgendes verstanden: Wird einer Trocknungskammer über eine Zuluftöffnung Zuluft als Trocknungsmedium zugeführt, so ist es im Sinne einer möglichst hohen Energieeffizienz erforderlich, daß das Trocknungsmedium erst dann über die Abluftöffnung abgeleitet wird, wenn es das zu trocknende Gut durchströmt hat. Werden in ihrer Drehrichtung umkehrbare (reversierbare) Ventilatoren verwendet, so ist es möglich, daß bei einer ersten Drehrichtung der Ventilatoren das erwärmte Trocknungsmedium in der gewünschten Weise das zu trocknende Gut durchströmt und daran anschließend über die Abluftöffnung abgeleitet wird, während bei der entgegengesetzten Drehrichtung der Ventilatoren ein Teil der Strömung des warmen Trocknungsmediums direkt von der Zuluftöffnung zu der Abluftöffnung strömt. Die in dem letztgenannten Fall für die Trocknung des zu trocknenden Gutes nicht benutzte Wärme wird als "Totwärme" bezeichnet. Da durch die "Totwärme" im Ergebnis ein Teil der aufgewendeten Heizenergie nutzlos vergeudet wird, belastet die "Totwärme" in erheblichem Maße die Umwelt.In the method according to the invention, the energy efficiency can be increased not only by the fact that storage heat is used from the individual drying chambers. In particular, the method according to the invention makes it possible to avoid so-called "dead heat". In this case, the term "dead heat" is understood as follows: If supply air is supplied as drying medium to a drying chamber via an inlet air opening, then it is necessary to maximize the energy efficiency so that the drying medium is not discharged via the exhaust air opening until it has flowed through the material to be dried , If reversible (reversible) fans are used in their direction of rotation, it is possible that in a desired direction of rotation of the fans, the heated drying medium in the desired manner flows through the material to be dried and is subsequently discharged through the exhaust port, while in the opposite direction of rotation Fans part of the flow of the warm drying medium flows directly from the supply air opening to the exhaust port. The heat not used in the latter case for drying the material to be dried is called "dead heat". Thereby the "dead heat" is wasted as a result of a part of the spent heating energy useless, the "dead heat" charged to a considerable extent the environment.
Insoweit löst sich die Erfindung von dem Gedanken, das Öffnen und Schließen der Zu- und Abluftöffnungen einer Kammer synchron zu gestalten. Erfindungsgemäß können vielmehr die Zuluft- und Abluftöffnungen asynchron angesteuert werden. Insoweit sieht eine vorteilhafte Weiterbildung der Erfindung vor, daß die einer Trocknungskammer zugeordnete Zuluftöffnung geöffnet und die zugeordnete Abluftöffnung geschlossen wird und daß ein aus der Trocknungskammer stammender Luftstrom zu der Abluftöffnung einer anderen Trocknungskammer geleitet wird. Auf diese Weise ist "Totwärme" auf effiziente Weise vermeidbar, so daß die Energieeffizienz des erfindungsgemäßen Verfahrens weiter gesteigert ist.In that regard, the invention solves the idea of making the opening and closing of the supply and exhaust ports of a chamber synchronously. Rather, according to the invention, the supply air and exhaust air openings can be controlled asynchronously. In that regard, an advantageous embodiment of the invention provides that a drying chamber associated Zuluftöffnung open and the associated exhaust port is closed and that originating from the drying chamber air flow is passed to the exhaust port of another drying chamber. In this way, "dead heat" can be avoided in an efficient manner, so that the energy efficiency of the method according to the invention is further increased.
Als Trocknungsmedium kann erfindungsgemäß Luft verwendet werden. Es ist jedoch erfindungsgemäß auch möglich, ein anderes gasförmiges Medium, beispielsweise überhitzten Dampf zu verwenden. Das Grundprinzip der Erfindung läßt sich von Trocknungsvorrichtungen bzw. Trocknungsverfahren in gleichwirkender Weise auch auf andere Vorrichtungen bzw. Verfahren übertragen, bei denen hygroskopische Güter behandelt werden. Zum Gegenstand der Erfindung gehören damit beispielsweise auch Dämpfvorrichtungen, bei denen hygroskopische Güter, beispielsweise Holz, gedämpft werden. Eine entsprechende Dämpfvorrichtung weist dann erfindungsgemäß einen eine Mehrzahl von Dämpfkammern aufweisenden Dämpfkammer-Verbund sowie Beströmungsmittel zum Einleiten eines Bedämpfungsmediums aus wenigstens einer der Dämpfkammern in wenigstens eine andere Dämpfkammer auf. Auch das erfindungsgemäße Verfahren läßt sich in entsprechender Weise sinngemäß auch auf andere Verfahren zum Behandeln hygroskopischer Güter übertragen.As the drying medium can be used according to the invention air. However, it is also possible according to the invention to use another gaseous medium, for example superheated steam. The basic principle of the invention can be transferred from drying devices or drying processes in the same manner to other devices or processes in which hygroscopic goods are treated. The subject matter of the invention thus also includes, for example, damping devices in which hygroscopic goods, for example wood, are damped. A corresponding damping device then has, according to the invention, a damping chamber composite comprising a plurality of damping chambers, as well as flow medium for introducing a damping medium from at least one of the damping chambers into at least one other damping chamber. The process according to the invention can also be analogously applied to other processes to transfer hygroscopic goods.
Die Erfindung wird nachfolgend anhand der beigefügten Zeichnung näher erläutert. Dabei bilden alle beschriebenen, in der Zeichnung dargestellten und in den Patentansprüchen beanspruchten Merkmale für sich genommen sowie in beliebiger Kombination miteinander den Gegenstand der Erfindung, unabhängig von ihrer Zusammenfassung in den Patentansprüchen sowie deren Rückbeziehung sowie unabhängig von ihrer Beschreibung bzw. Darstellung in der Zeichnung.The invention will be explained in more detail with reference to the accompanying drawings. All the features described in the drawing and claimed in the claims, taken alone and in any combination with each other form the subject of the invention, regardless of their summary in the claims and their dependency and regardless of their description or representation in the drawing.
Es zeigt:
- Fig. 1
- einen Vertikalschnitt durch ein Ausführungsbeispiel einer erfindungsgemäßen Trocknungsvorrichtung,
- Fig. 2
- einen Grundriß der Trocknungsvorrichtung gemäß
Fig. 1 , - Fig. 3
- einen weiteren Vertikalschnitt der Trocknungsvorrichtung gemäß
Fig. 1 in einer zuFig. 1 um 90° versetzten Schnittebene, - Fig. 4
- in zu
Fig. 2 ähnlicher Darstellung ein Detail, - Fig. 5
- ein Blockschaltbild einer Steuerungseinrichtung der Trocknungsvorrichtung gemäß
Fig. 1 , - Fig. 6
- in gleicher Darstellung wie
Fig. 2 die Trocknungsvorrichtung gemäßFig. 2 in einem ersten exemplarischen Betriebszustand, - Fig. 7
- in gleicher Darstellung wie
Fig. 6 die Trocknungsvorrichtung gemäßFig. 2 in einem zweiten exemplarischen Betriebszustand,
- Fig. 8A
- zur Erläuterung eines Details des erfindungsgemäßen Verfahrens eine Schemadarstellung zweier Trocknungskammern der Trocknungsvorrichtung gemäß
Fig. 1 in einer ersten Konstellation, - Fig. 8B
- in gleicher Darstellung wie
Fig. 8A die Trocknungskammern in einer zweiten Konstellation, - Fig. 9
- eine schematische Darstellung einer erfindungsgemäßen Absperreinrichtung mit zwei relativ zueinander beweglichen Klappenteilen in einer ersten Position der Klappenteile,
- Fig. 10
- die Absperreinrichtung gemäß
Fig. 9 in einer zweiten Position der Klappenteile, - Fig. 11
- in gleicher Darstellung wie
Fig. 9 die Absperreinrichtung in einer dritten Position der Klappenteile und - Fig. 12
- in gleicher Darstellung wie
Fig. 9 die Absperreinrichtung gemäßFig. 9 in einer vierten Position der Klappenteile.
- Fig. 1
- a vertical section through an embodiment of a drying device according to the invention,
- Fig. 2
- a plan view of the drying device according to
Fig. 1 . - Fig. 3
- a further vertical section of the drying apparatus according to
Fig. 1 in one tooFig. 1 90 ° offset cutting plane, - Fig. 4
- in to
Fig. 2 similar representation a detail, - Fig. 5
- a block diagram of a control device of the drying device according to
Fig. 1 . - Fig. 6
- in the same representation as
Fig. 2 the drying device according toFig. 2 in a first exemplary operating state, - Fig. 7
- in the same representation as
Fig. 6 the drying device according toFig. 2 in a second exemplary operating state,
- Fig. 8A
- to explain a detail of the method according to the invention is a schematic representation of two drying chambers of the drying apparatus according to
Fig. 1 in a first constellation, - Fig. 8B
- in the same representation as
Fig. 8A the drying chambers in a second constellation, - Fig. 9
- 1 is a schematic representation of a shut-off device according to the invention with two flap parts which are movable relative to one another in a first position of the flap parts,
- Fig. 10
- the shut-off device according to
Fig. 9 in a second position of the flap parts, - Fig. 11
- in the same representation as
Fig. 9 the shut-off device in a third position of the flap parts and - Fig. 12
- in the same representation as
Fig. 9 the shut-off device according toFig. 9 in a fourth position of the flap parts.
In den Figuren der Zeichnung sind gleiche bzw. sich entsprechende Bauteile mit den gleichen Bezugszeichen versehen.In the figures of the drawing, the same or corresponding components are provided with the same reference numerals.
In
Die erfindungsgemäße Trocknungsvorrichtung 2 weist Beströmungsmittel zum Einleiten von Trocknungsmedium, insbesondere Luft, aus wenigstens einer der Trocknungskammern in wenigstens eine andere Trocknungskammer auf. Diese Beströmungsmittel werden weiter unten anhand der
Die Trocknungsvorrichtung 2 weist ferner eine Steuerungseinrichtung zur Ansteuerung der Beströmungsmittel auf. Diese Steuerungseinrichtung wird weiter unten anhand von
Die Trocknungsvorrichtung 2 ist insbesondere zur Durchführung eines erfindungsgemäßen Verfahrens geeignet.The
Die Trocknungsvorrichtung 2 arbeitet nach dem Prinzip der Zu-/Abluft-Trocknung, bei der dem Nutzraum 6 der Trocknungskammer A, in dem zu trocknendes Gut 8 aufgenommen ist, ein erwärmtes Trocknungsmedium zugeführt wird. Bei dem dargestellten Ausführungsbeispiel handelt es sich bei dem zu trocknenden Gut 8 um gestapeltes Schnittholz. Die Trocknungsvorrichtung 2 ist jedoch auch zum Trocknen anderer hygroskopischer Güter geeignet. Bei der Zu-/Abluft-Trocknung wird über pro Trocknungskammer A wenigstens eine Zuluftöffnung Frischluft als Trocknungsmedium zugeführt. Hierzu weist die Trocknungskammer A wenigstens eine Zuluftöffnung auf. Bei dem dargestellten Ausführungsbeispiel weist die Trocknungskammer A drei Zuluftöffnungen auf, von denen der Übersichtlichkeit halber lediglich eine Zuluftöffnung mit dem Bezugszeichen 10 versehen ist.The
Um erfindungsgemäß Luft aus einer der Trocknungskammern A, B, C und D in eine der anderen Trocknungskammern einzuleiten, sind die Trocknungskammern A, B, C und D strömungstechnisch miteinander verbindbar. Bei dem dargestellten Ausführungsbeispiel ist den Trocknungskammern A, B, C und D jeweils ein eigener Strömungskanal 20a, 20b, 20c und 20d zugeordnet. Jeweils benachbarte der Strömungskanäle 20a bis 20d, also beispielsweise die Strömungskanäle 20a und 20b der Trocknungskammern A und B, sind über jeweils eine Öffnung miteinander verbunden, die in Bezug auf die Strömungskanäle 20a und 20b mit dem Bezugszeichen 22 versehen ist. Zum Einleiten von Luft aus dem Strömungskanal 20a in den Strömungskanal 20b weisen die Beströmungsmittel einen Querventilator 24 auf, der im Bereich der Öffnung 22 angeordnet ist und beispielsweise als Rohrlüfter ausgebildet sein kann. Der Querventilator 24 ist reversierbar ausgebildet und kann beispielsweise mittels eines Frequenzumrichters angesteuert werden. Gegebenenfalls kann die Öffnung 22 durch eine Absperreinrichtung, beispielsweise eine Klappe oder Jalousie 23 (vgl.
Wird die Strömungsrichtung des Trocknungsmediums in der Trocknungskammer A durch Umsteuern (Reversieren) der Umluftventilatoren 18 und des Querventilators 24 umgekehrt, so fungieren die zuvor als Zuluftöffnungen fungierenden Öffnungen 10 als Abluftöffnungen, während die zuvor als Abluftöffnungen fungierenden Öffnungen 16 dann als Zuluftöffnungen fungieren.If the direction of flow of the drying medium in the drying chamber A is reversed by reversing the circulating
Wie in
Bei der erfindungsgemäßen Trocknungsvorrichtung 2 kann somit einerseits der Nutzraum jeder Trocknungskammer A, B, C und D durch entsprechendes Betätigen der zugeordneten Absperreinrichtungen, beispielsweise der Absperreinrichtungen 26 und 28, mit dem jeweils zugeordneten Strömungskanal 20a, 20b, 20c bzw. 20d strömungstechnisch in Verbindung gebracht oder von demselben getrennt werden. Gleichzeitig können benachbarte Strömungskanäle 20a und 20b, strömungstechnisch miteinander in Verbindung gebracht werden. Im Ergebnis ist es erfindungsgemäß somit möglich, Luft aus einer der Verbindungskammern A, B, C und D in wenigstens eine der anderen Trocknungskammern A, B, C und D einzuleiten. Durch entsprechende Ansteuerung der Strömungsmittel können die Trocknungskammern A, B, C und D in beliebiger Weise strömungstechnisch miteinander verschaltet werden.In the case of the
Erfindungsgemäß ist wenigstens einer der Trocknungskammern A, B, C und D eine mit einer Steuerungseinrichtung (vgl. weiter unten die Beschreibung von
Wie aus
Wie aus
Zum Abfühlen des außerhalb der Trocknungsvorrichtung 2 herrschenden Außenklimas ist an dem Träger 46 ein Außenklimasensor 50 angeordnet. Hierzu ist der Träger 46 durch eine in der Außenwandung 52 der Trocknungsvorrichtung 2 gebildete Öffnung 54 herausgeführt. Wie aus
Die Einzelsensoren 40, 42, 44 können nach einem beliebigen geeigneten Wirkprinzip arbeiten, beispielsweise als Temperatur- und/oder Luftfeuchtigkeitssensoren ausgestaltet sein. Zweckmäßigerweise sind die Einzelsensoren 40, 42, 44 symmetrisch zu den jeweiligen Trennwänden zwischen benachbarten Kammern angeordnet.The
Die Sensoranordnung 38a ermöglicht es, die Strömungsverhältnisse einer in die jeweilige Trocknungskammer einströmenden oder aus der Trocknungskammer A ausströmenden Strömung des Trocknungsmediums abzufühlen. Insbesondere können hierbei die Temperatur und/oder Feuchtigkeit des strömenden Trocknungsmediums ermittelt werden. Die Ausgangssignale der Sensoranordnung 38a, 38b, 38c und 38d werden erfindungsgemäß herangezogen, um den Trocknungsprozess in der Trocknungsvorrichtung 2 zu steuern bzw. zu regeln.The
In
Die Durchführung eines Ausführungsbeispieles des erfindungsgemäßen Verfahrens wird nachfolgend anhand der
Bei dem erfindungsgemäßen Verfahren wird das Steuerungsprogramm von der Steuerungseinrichtung derart ermittelt, daß der Energiebedarf des gesamten Trocknungskammer-Verbundes 4 oder eines Teiles davon während des Trocknungsprozesses optimiert wird, wobei die Strömungsverhältnisse wenigstens einer in eine Trocknungskammer A, B, C bzw. D einströmenden oder aus der Trocknungsvorrichtung ausströmenden Luftströmung abgefühlt und in die Ermittlung des Steuerungsprogrammes einbezogen werden. Die Optimierung des Energiebedarfes kann beispielsweise so erfolgen, daß der Bedarf an den Heizeinrichtungen der Trocknungsvorrichtung 2 zugeführter Heizenergie minimiert wird.In the method according to the invention, the control program is determined by the control device such that the energy requirement of the entire
Die
Bei der dargestellten Konstellation sei angenommen, daß sich die Trocknungskammer B in einer Ruhephase befindet. Hierbei werden der Strömungskammer B zugeordnete Absperreinrichtungen 26b, 28b geschlossen, was in
Gleichzeitig sei angenommen, daß in der Trocknungskammer D ein von den übrigen Trocknungsvorgängen unabhängiger Trocknungsvorgang läuft. Aus diesem Grund ist der Strömungskanal 20d strömungstechnisch von dem Strömungskanal 20c getrennt, indem entweder eine beide Strömungskanäle verbindende Öffnung durch eine Absperreinrichtung geschlossen ist oder der zugeordnete Querventilator 24d entsprechend angesteuert wird.At the same time it is assumed that in the drying chamber D runs independent of the other drying processes drying process. For this reason, the
Im Ergebnis tauscht also die Trocknungskammer A Luft mit der Trocknungskammer C aus, während sich die Trocknungskammer B in einer Ruhephase befindet und in der Trocknungskammer D ein unabhängiger Trocknungsvorgang abläuft. Während der Ruhephase kann der Trocknungsvorgang in der Trocknungskammer B in der zuvor bereits beschriebenen Weise im Rahmen eines Wechselklimas voranschreiten.As a result, the drying chamber A exchanges air with the drying chamber C, while the drying chamber B is in a quiescent phase and an independent drying process takes place in the drying chamber D. During the rest phase, the drying process in the drying chamber B in the manner already described above can proceed in the context of an alternating climate.
Die im Rahmen des erfindungsgemäßen Verfahrens ausgeführte Optimierung des Energiebedarfes ermöglicht die Einsparung erheblicher Mengen an Energie und entlastet damit die Umwelt.The optimization of the energy requirement carried out in the context of the method according to the invention makes it possible to save significant amounts of energy and thus relieves the burden on the environment.
In der Konstellation gemäß
Bei dem dargestellten Ausführungsbeispiel sind die Klappenteile 64, 66 stufenlos unabhängig voneinander beweglich und schwenkbar gelagert. Mittels zugeordneter Antriebseinrichtungen sind die Klappenteile 64, 66 in Richtung von Doppelpfeilen 68, 70 verschwenkbar.In the illustrated embodiment, the
Die erfindungsgemäße Absperreinrichtung 62 dient der Erhöhung der Energieeffizienz der Trocknungsvorrichtung 2 und bietet gleichzeitig vielfältige Möglichkeiten der Strömungsleitung.The shut-off
Claims (16)
mit einem eine Mehrzahl von Trocknungskammern aufweisenden Trocknungskammer-Verbund,
mit Beströmungsmitteln zum Einleiten von Trocknungsmedium, insbesondere Luft, aus wenigstens einer der Trocknungskammern in wenigstens eine andere Trocknungskammer und
mit einer Steuerungseinrichtung zur Ansteuerung der Beströmungsmittel,
dadurch gekennzeichnet,
daß wenigstens einer der Trocknungskammern eine mit der Steuerungseinrichtung in Signalübertragungsverbindung stehende Sensoranordnung zugeordnet ist zum Abfühlen von Strömungsverhältnissen einer in die Trocknungskammer einströmenden oder aus der Trocknungskammer ausströmenden Strömung,
wobei die Sensoranordnung wenigstens zwei vorzugsweise in Strömungsrichtung zueinander beabstandete Einzelsensoren aufweist.Drying device for drying hygroscopic goods,
with a drying chamber composite having a plurality of drying chambers,
with flow agents for introducing drying medium, in particular air, from at least one of the drying chambers into at least one other drying chamber and
with a control device for controlling the flow agents,
characterized,
that at least one of the drying chambers a standing in signal communication with the control device sensor arrangement is associated for sensing flow conditions of a flowing into the drying chamber or flowing out of the drying chamber flow,
wherein the sensor arrangement at least two, preferably in the flow direction spaced apart individual sensors having.
daß die Sensoranordnung wenigstens zwei gleichartige Einzelsensoren aufweist.Drying device according to claim 1 or 2, characterized in that at least one individual sensor is a temperature sensor and / or a humidity sensor and / or an air speed sensor and / or a pressure difference sensor and / or
the sensor arrangement has at least two identical individual sensors.
daß wenigstens zwei Trocknungskammern eine gemeinsame Sensoranordnung zugeordnet ist.Drying device according to one of the preceding claims, characterized in that each drying chamber is assigned its own sensor arrangement or
in that at least two drying chambers are assigned a common sensor arrangement.
daß der Träger stangenartig ausgebildet ist und/oder daß der Träger linear beweglich und/oder drehbar ist und/oder
daß dem Träger wenigstens ein Linearantrieb und/oder wenigstens ein Drehantrieb zugeordnet ist.Drying device according to claim 4, characterized in that the carrier is arranged to be movable and / or
that the carrier is rod-like and / or that the carrier is linearly movable and / or rotatable and / or
in that the carrier is assigned at least one linear drive and / or at least one rotary drive.
daß wenigstens ein Sensorband in einem wenigstens zwei Trocknungskammern miteinander verbindenden Strömungskanal angeordnet ist und/oder
daß wenigstens ein Sensorband in einem Nutzraum einer Trocknungskammer angeordnet ist und/oder
daß wenigstens zwei Sensörbänder im wesentlichen senkrecht zueinander angeordnet sind.Drying device according to one of claims 2 to 7, characterized in that at least two mutually spaced sensor strips are provided and / or
in that at least one sensor band is arranged in a flow channel interconnecting at least two drying chambers and / or
in that at least one sensor band is arranged in a useful space of a drying chamber and / or
in that at least two sensor bands are arranged substantially perpendicular to one another.
aufweisen.
exhibit.
daß die Klappenteile schwenkbar gelagert sind und/oder daß die Klappenteile unabhängig voneinander beweglich sind und/oder
daß wenigstens eines der Klappenteile zum Verschließen eines bei Benutzung der Trocknungskammer zwischen deren Decke oder Zwischendecke und dem zu trocknenden Gut gebildeten Freiraumes ausgebildet ist und/oder
daß wenigstens ein Klappenteil im Bereich der Decke oder Zwischendecke angelenkt ist.Drying device according to claim 10, characterized characterized in that the shut-off device for separating the working space of a drying chamber from a flow channel, via which the drying chamber drying medium from at least one other drying chamber is supplied or is supplied, is formed and / or
that the flap parts are pivotally mounted and / or that the flap parts are independently movable and / or
in that at least one of the flap parts is designed to close a free space formed when the drying chamber is used between its ceiling or false ceiling and the material to be dried; and / or
that at least one flap part is articulated in the area of the ceiling or false ceiling.
bei dem während eines Trocknungsprozesses in den einzelnen Trocknungskammern Trocknungsvorgänge ausgeführt werden, bei denen zu trocknendes Gut mit erwärmtem Trocknungsmedium beströmt wird,
bei dem durch Beströmungsmittel Luft aus den einzelnen Trocknungskammern in andere Trocknungskammern geleitet werden kann,
bei dem in den einzelnen Trocknungskammern jeweils wenigstens ein Parameter des jeweiligen Klimas in der Trocknungskammer abgefühlt wird und die Werte des jeweiligen Parameters einer zentralen Steuerungseinrichtung übermittelt werden und
bei dem von der Steuerungseinrichtung ein Steuerungsprogramm zur Ansteuerung der Beströmungsmittel ermittelt wird,
dadurch gekennzeichnet,
daß das Steuerungsprogramm von der Steuerungseinrichtung derart ermittelt wird, daß der Energiebedarf des gesamten Trocknungskammer-Verbundes oder eines Teiles davon während des Trocknungsprozesses optimiert wird, wobei die Strömungsverhältnisse wenigstens einer in eine Trocknungskammer strömenden Luftströmung abgefühlt und in die Ermittlung des Steuerungsprogrammes einbezogen werden.Method for operating a drying chamber composite having a plurality of drying chambers, in particular using a drying device according to one of the preceding claims,
in which drying operations are carried out in the individual drying chambers during a drying process, in which material to be dried is flowed through with heated drying medium,
in which air can be passed from the individual drying chambers into other drying chambers by means of the flow medium.
in which in each case at least one parameter of the respective climate in the drying chamber is sensed in the individual drying chambers and the values of the respective parameter are transmitted to a central control device, and
in which a control program for controlling the flow means is determined by the control device,
characterized,
that the control program is determined by the control device such that the energy requirement of the entire drying chamber composite or a part thereof during the drying process is optimized, wherein the flow conditions of at least one flowing into a drying chamber air flow are sensed and included in the determination of the control program.
daß die Beströmungsmittel Absperreinrichtungen aufweisen, durch die die jeweilige Trocknungskammer strömungstechnisch in Verbindung mit wenigstens einer anderen Trocknungskammer bringbar ist und strömungstechnisch von den anderen Trocknungskammern abtrennbar ist und/oder
daß pro Trocknungskammer wenigstens eine Zuluftöffnung zur Zuführung von Frischluft zu der Trocknungskammer und wenigstens eine Abluftöffnung zur Abführung von Abluft aus de Trocknungskammer vorgesehen ist.Method according to one of Claims 12 to 14, characterized in that the flow means comprise heating means, in particular heating registers, by means of which the drying medium is heated and / or in that the flow means comprise circulating-air fans for circulating the drying medium and / or
that the flow control means comprise shut-off devices, by means of which the respective drying chamber can be fluidly brought into connection with at least one other drying chamber and can be separated from the other drying chambers in terms of flow and / or fluidity
that per drying chamber at least one supply air opening for supplying fresh air to the drying chamber and at least one exhaust port for discharging exhaust air from the drying chamber is provided.
daß die einer Trocknungskammer zugeordnete Zuluftöffnung geöffnet und die zugeordnete Abluftöffnung geschlossen wird und daß ein aus der Trocknungskammer stammender Strom an Trocknungsmedium zu der Abluftöffnung einer anderen Trocknungskammer geleitet wird und/oder
daß das Steuerungsprogramm von der Steuerungseinrichtung während des Trocknungsprozesses fortlaufend überprüft und ggf. neu ermittelt wird.A method according to claim 15, characterized in that the opening and closing of the supply and exhaust air opening (s) is controlled so that a Bypasströmung heated drying medium from the supply air directly to the exhaust port of a drying chamber without having to flow through the material to be dried, avoided will and / or
in that the supply air opening associated with a drying chamber is opened and the associated exhaust air opening is closed and that a stream of drying medium originating from the drying chamber is conducted to the exhaust air opening of another drying chamber and / or
that the control program is continuously checked by the control device during the drying process and possibly redetermined.
Priority Applications (1)
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PL11009564T PL2466238T3 (en) | 2010-12-14 | 2011-12-02 | Drying apparatus |
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DE102010054493.0A DE102010054493B4 (en) | 2010-12-14 | 2010-12-14 | drying device |
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EP2466238A3 EP2466238A3 (en) | 2014-11-26 |
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DE102018106806A1 (en) | 2018-02-21 | 2019-08-22 | Reinhard Brunner | Drying device for drying hygroscopic material to be dried |
WO2023213683A1 (en) | 2022-05-03 | 2023-11-09 | Reinhard Brunner | Continuous drying device |
DE102022120887B4 (en) | 2022-05-03 | 2025-01-02 | Reinhard Brunner | channel drying device |
DE102022130433B4 (en) | 2022-05-09 | 2024-09-05 | Reinhard Brunner | Duct drying device |
EP4276398A1 (en) | 2022-05-09 | 2023-11-15 | Reinhard Brunner | Duct drying device |
CN114993030A (en) * | 2022-07-05 | 2022-09-02 | 北京中兴洁源科技有限公司 | System and method for eliminating peculiar smell of waste steam of tube bundle dryer |
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DE102005030501A1 (en) | 2005-06-28 | 2007-01-04 | Brunner, Reinhard, Dipl.-Ing. | Drying device especially for drying saw wood has interconnected drying chambers with common flow generating unit for circulating drying air flow around inside of chambers, and heating device for heating drying air |
DE102008045829A1 (en) | 2008-09-05 | 2010-03-11 | Brunner, Reinhard, Dipl.-Ing. | Drying device, particularly for lumber, has two separate drying chambers for inserting drying goods, where each drying chamber with drying unit has aerator for current feeding of useful volume |
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US20070193056A1 (en) * | 2006-02-21 | 2007-08-23 | Marius Switalski | Dryer assembly |
EP1959218A1 (en) * | 2007-02-15 | 2008-08-20 | IMAS S.P.A. Industria Meccanica | Process for controlling, checking and adjusting instantaneous values of ceramic products submitted to drying |
WO2009012943A2 (en) * | 2007-07-20 | 2009-01-29 | Strahm Hi-Tex Systems Ag | Method, drying oven for drying a material web with hot air, and use of the apparatus |
DE102008013012B4 (en) * | 2008-03-07 | 2010-08-12 | Hans Lingl Anlagenbau Und Verfahrenstechnik Gmbh & Co. Kg | Tunnel dryers for drying moldings, with air inlets spaced transversely from one another |
-
2010
- 2010-12-14 DE DE102010054493.0A patent/DE102010054493B4/en active Active
-
2011
- 2011-12-02 PL PL11009564T patent/PL2466238T3/en unknown
- 2011-12-02 EP EP11009564.3A patent/EP2466238B1/en active Active
Patent Citations (5)
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DE3425642C1 (en) | 1984-07-12 | 1985-10-24 | Hildebrand Holztechnik GmbH, 7446 Oberboihingen | Drying device, in particular for sawn timber |
DE3443915A1 (en) | 1984-07-12 | 1986-06-12 | Hildebrand Holztechnik GmbH, 7446 Oberboihingen | DRYING DEVICE, IN PARTICULAR FOR WOOD |
EP0292717B1 (en) | 1987-05-26 | 1993-07-21 | Brunner Trockentechnik Gmbh | Timber drying device |
DE102005030501A1 (en) | 2005-06-28 | 2007-01-04 | Brunner, Reinhard, Dipl.-Ing. | Drying device especially for drying saw wood has interconnected drying chambers with common flow generating unit for circulating drying air flow around inside of chambers, and heating device for heating drying air |
DE102008045829A1 (en) | 2008-09-05 | 2010-03-11 | Brunner, Reinhard, Dipl.-Ing. | Drying device, particularly for lumber, has two separate drying chambers for inserting drying goods, where each drying chamber with drying unit has aerator for current feeding of useful volume |
Also Published As
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PL2466238T3 (en) | 2019-05-31 |
DE102010054493A1 (en) | 2012-06-14 |
DE102010054493B4 (en) | 2017-06-01 |
EP2466238B1 (en) | 2018-08-22 |
EP2466238A3 (en) | 2014-11-26 |
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