CN110145886A - Air energy thermal water central air conditioner system - Google Patents
Air energy thermal water central air conditioner system Download PDFInfo
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- CN110145886A CN110145886A CN201910379992.6A CN201910379992A CN110145886A CN 110145886 A CN110145886 A CN 110145886A CN 201910379992 A CN201910379992 A CN 201910379992A CN 110145886 A CN110145886 A CN 110145886A
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- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 title claims abstract description 138
- 238000005057 refrigeration Methods 0.000 claims abstract description 19
- 238000010438 heat treatment Methods 0.000 claims abstract description 17
- 238000004378 air conditioning Methods 0.000 claims abstract description 7
- YCKRFDGAMUMZLT-UHFFFAOYSA-N Fluorine atom Chemical compound [F] YCKRFDGAMUMZLT-UHFFFAOYSA-N 0.000 claims abstract description 6
- 229910052731 fluorine Inorganic materials 0.000 claims abstract description 6
- 239000011737 fluorine Substances 0.000 claims abstract description 6
- 239000003507 refrigerant Substances 0.000 claims description 112
- 230000008676 import Effects 0.000 claims description 12
- 238000001816 cooling Methods 0.000 claims description 7
- 230000006835 compression Effects 0.000 claims description 6
- 238000007906 compression Methods 0.000 claims description 6
- 230000005494 condensation Effects 0.000 claims description 2
- 238000009833 condensation Methods 0.000 claims description 2
- 238000002347 injection Methods 0.000 claims description 2
- 239000007924 injection Substances 0.000 claims description 2
- 230000008878 coupling Effects 0.000 claims 5
- 238000010168 coupling process Methods 0.000 claims 5
- 238000005859 coupling reaction Methods 0.000 claims 5
- 239000006227 byproduct Substances 0.000 claims 2
- 238000007710 freezing Methods 0.000 claims 2
- 230000008014 freezing Effects 0.000 claims 2
- 238000009434 installation Methods 0.000 claims 1
- 239000000047 product Substances 0.000 claims 1
- 239000000203 mixture Substances 0.000 abstract description 3
- JEGUKCSWCFPDGT-UHFFFAOYSA-N h2o hydrate Chemical compound O.O JEGUKCSWCFPDGT-UHFFFAOYSA-N 0.000 description 8
- 238000010586 diagram Methods 0.000 description 7
- 238000000034 method Methods 0.000 description 6
- 239000007864 aqueous solution Substances 0.000 description 4
- 239000008399 tap water Substances 0.000 description 4
- 235000020679 tap water Nutrition 0.000 description 4
- 238000004519 manufacturing process Methods 0.000 description 3
- 230000000712 assembly Effects 0.000 description 2
- 238000000429 assembly Methods 0.000 description 2
- 230000000694 effects Effects 0.000 description 2
- 238000004134 energy conservation Methods 0.000 description 2
- 238000005516 engineering process Methods 0.000 description 2
- 230000009286 beneficial effect Effects 0.000 description 1
- 230000032696 parturition Effects 0.000 description 1
- 238000004064 recycling Methods 0.000 description 1
- 239000000243 solution Substances 0.000 description 1
- 238000009423 ventilation Methods 0.000 description 1
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24H—FLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
- F24H4/00—Fluid heaters characterised by the use of heat pumps
- F24H4/02—Water heaters
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F25—REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
- F25B—REFRIGERATION MACHINES, PLANTS OR SYSTEMS; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS
- F25B13/00—Compression machines, plants or systems, with reversible cycle
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F25—REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
- F25B—REFRIGERATION MACHINES, PLANTS OR SYSTEMS; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS
- F25B41/00—Fluid-circulation arrangements
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B30/00—Energy efficient heating, ventilation or air conditioning [HVAC]
- Y02B30/12—Hot water central heating systems using heat pumps
Landscapes
- Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- Mechanical Engineering (AREA)
- Thermal Sciences (AREA)
- General Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Heat-Pump Type And Storage Water Heaters (AREA)
Abstract
The invention discloses a kind of air energy thermal water central air conditioner systems, the central air conditioner system and air energy water heater system of fluorine system system are integrated into a system, shared compressor and common condenser, provide air conditioning function simultaneously, it executes recuperation of heat and produces domestic hot-water, floor heating hot water can also be provided.New composition system runs hot water or cold water processed, except damp-heat water, refrigeration hot water, heating, heating gas water heating, is adapted to small space and needs hot water place, energy saving significant.Air energy thermal water central air conditioner system, by boiler, common condenser, indoor units, outdoor compressor group, pipeline pipe fitting and control valve group composition.
Description
Technical field
The present invention relates to air energy water heater and central air conditioner system field, in particular to a kind of air energy water heater, with
And the central air conditioner system of recuperation of heat.
Background technique
Currently, in the market fluorine system unite central air-conditioning, be can only cooling supply heating function, not can be carried out recuperation of heat production and living
Hot water, and air energy water heater, only only production and living hot water function.To solve above-mentioned two kinds of product shortcomings, Yi Zhongshi
For small area fluorine system unite central air-conditioning, and can be carried out recuperation of heat production hot water energy can be saved for long-time cooling supply
Source, and energy conservation is considerable.This product is exactly air energy thermal water central air conditioner system, and this product, which can be used as central air-conditioning, to be made
With, and recuperation of heat can be carried out, and can for hot gas or be in winter floor heating hot-water supply, and can be in spring and autumn separately as sky
Gas energy water heater uses.
The information disclosed in the background technology section is intended only to increase the understanding to general background of the invention, without answering
When being considered as recognizing or imply that the information constitutes the prior art already known to those of ordinary skill in the art in any form.
Summary of the invention
The purpose of the present invention is to provide air energy thermal water central air conditioner system, the recuperation of heat for solving small space is asked
Topic.
To achieve the above object, the present invention provides air energy thermal water central air conditioner systems, by boiler, share condensation
Device, indoor units, outdoor compressor group, pipeline pipe fitting composition and control valve group at.One of boiler, including hot water effluent
Mouthful, cold water inlet, refrigerant inlet refrigerant outlet;A kind of common condenser, there are four interfaces, respectively refrigerant inlet
Two, refrigerant outlet two, matching is divided into two groups, and a group interface and indoor units form partial circulating, another group interface and heat
Water tank forms partial circulating;A kind of indoor units are made of blower+surface air cooler, there is a refrigerant inlet, and a refrigerant goes out
Mouthful;Outdoor compressor group is compressor and relevant connection pipeline and pipe fitting;Four-way valve module is three refrigeration four-way valve connections,
It is connect for the first four-way valve second interface with the 5th interface of the second four-way valve or the first four-way valve third interface and third four-way valve
The connection of 9th interface or the first four-way valve second interface are connect with the 5th interface of the second four-way valve, third four-way valve and the two the
The connection of the 6th interface of four-way or the first four-way valve second interface are connect with the 5th interface of the second four-way valve;Three groups of control valve groups.
In above-mentioned technical proposal, the air energy thermal water central air conditioner system one, comprising: outdoor compressor group has
Exhaust outlet and gas returning port;The first interface of four-way valve 1 is connect with the outdoor unit compressor;Hot water tank component, the system
Cryogen import is connect with the 11st interface of the four-way valve 23;Of four-way valve 23 described in common condenser refrigerant interface V1
The connection of ten interfaces, common condenser refrigerant interface V3 are connect with the 7th interface of the four-way valve 22;Indoor units refrigerant
Import is connect with the 6th interface of the four-way valve 22;The second interface of the four-way valve 21 connects with the 5th of the four-way valve 22
Mouth connection;The third interface of the four-way valve 21 is connect with the 9th interface of the four-way valve 23;Boiler refrigerant outlet with
Common condenser refrigeration interface V2 passes through control valve group and connects.Common condenser refrigerant interface V4 and indoor units pass through control
Valve group connection;Indoor units pass through the total muffler connection of shutdown valve group junction chamber external compression unit.The 4th of the four-way valve 21
Interface, the 8th of the four-way valve 22 the, the 12nd interface of the four-way valve 23 converge connection by valve member and pipeline, and are connected to
Compressor air suction mouth.
Preferably, in above-mentioned technical proposal, the air energy thermal water central air conditioner system, including the first four-way valve, with
Second four-way valve and the connection of third four-way valve;Second four-way valve is connect with the indoor units by control valve, with
And it is connected with described one refrigerant mouth of common condenser;Third four-way valve is connected with the boiler, Yi Jiyu
Another refrigerant mouth of the common condenser is connected;Indoor units and the common condenser are connected by control valve group
It connects;Boiler and another refrigerant mouth of the common condenser, are connected by control valve group.
Preferably, in above-mentioned technical proposal, the control valve group has throttling and turn-off function.Preferably, above-mentioned technology
In scheme, the air energy thermal water central air conditioner system, comprising:
Compressor with exhaust outlet and gas returning port, and has air injection enthalpy-increasing entrance;
First four-way valve has first to fourth interface, and the first interface is connect with the exhaust outlet of the compressor,
4th interface is connect with the gas returning port of the compressor, and same time, the first interface connects with second interface and third
One of conducting in one of conducting in mouthful, the 4th interface and the second interface and third interface;
Second four-way valve has the 5th to the 8th interface, the third in the 5th interface and first four-way valve
Interface connection, the 8th interface are connect with the gas returning port in the compressor, and same time, the 5th interface connects with the 6th
One of conducting in mouth and the 7th interface, the 8th interface and one of them in the 6th interface and the 7th interface
Conducting;
Third four-way valve has the 9th to the 12nd interface, and the in the 9th interface and first four-way valve
The connection of two interfaces, the 12nd interface connect with the gas returning port in the compressor, the same time, the 9th interface and the
In one of conducting in ten interfaces and the 11st interface, the 11st interface and the tenth interface and the 11st interface
One of conducting;
The 12nd mouthful of hot water tank component, the boiler refrigerant inlet and the third four-way valve is connect, the heat
Water tank refrigerant outlet is connect by control valve group with shared condenser assembly, the hot water water inlet and tap water
Mouth connection, the hot water water outlet are connected with using sanitary ware or water valve, the hot water floor heating interface and ground
Heating coil road is connected, and heat exchange coil is equipped in the water tank, the heat exchange coil is for aqueous solution in high temperature refrigerant and water tank
Carry out heat exchange;And
Common condenser component is condenser and/or evaporator, the work package totally four interfaces, wherein one group
7th interface of one end of inlet and outlet and the second four-way valve, is connected by control valve group, the other end and second control valve group
It is connect with indoor unit;One end of another group of inlet and outlet is connect with the tenth interface of third four-way valve, and the other end passes through the first control
Valve group is connect with the refrigerant outlet of boiler;
Indoor units, one end are connect by third control valve group with the 6th interface of the second four-way valve, and one point of the other end
Branch refrigerant outlet is connect with second control valve group with common condenser, and another branched-refrigerant outlet of the other end passes through
Valve connects with compressor inleting pipe.
In above-mentioned technical proposal, the air energy thermal water central air conditioner system two, comprising: outdoor compressor group has
Exhaust outlet and gas returning port;The first interface of four-way valve 1 is connect with the outdoor unit compressor;Hot water tank component, the system
Cryogen import is connect with the tenth interface of the four-way valve 23;The tenth of four-way valve 23 described in common condenser refrigerant interface V1
The connection of one interface, common condenser refrigerant interface V3 are connect with the 7th interface of the four-way valve 22;Indoor units refrigerant
Import is connect with the third interface of the four-way valve 21;The second interface of the four-way valve 21 connects with the 5th of the four-way valve 22
Mouth connection;6th interface of the four-way valve 22 is connect with the 9th interface of the four-way valve 23;Boiler refrigerant outlet with
Common condenser refrigeration interface V2 passes through control valve group and connects.Common condenser refrigerant interface V4 and indoor units pass through control
Valve group connection;Indoor units pass through the total muffler connection of shutdown valve group junction chamber external compression unit.The 4th of the four-way valve 21
Interface, the 8th of the four-way valve 22 the, the 12nd interface of the four-way valve 23 converge connection by valve member and pipeline, and are connected to
Compressor air suction mouth.
In above-mentioned technical proposal, the air energy thermal water central air conditioner system three, comprising: outdoor compressor group has
Exhaust outlet and gas returning port;The first interface of four-way valve 1 is connect with the outdoor unit compressor;Hot water tank component, the system
Cryogen import is connect with the 6th interface of the four-way valve 22;The 7th of four-way valve 22 described in common condenser refrigerant interface V1
Interface connection, common condenser refrigerant interface V3 are connect with the 4th interface of the four-way valve 21;Indoor units refrigerant into
Mouth is connect with the third interface of the four-way valve 21;5th interface of the second interface of the four-way valve 21 and the four-way valve 22
Connection;Boiler refrigerant outlet is connect with common condenser refrigeration interface V2 by control valve group.Common condenser refrigerant
Interface V4 is connect with indoor units by control valve group;Indoor units pass through the shutdown total muffler of valve group junction chamber external compression unit
Connection.8th and another stub interface of indoor units of the four-way valve 22 are connected to compressor air suction mouth.
Compared with prior art, the invention has the following beneficial effects:
(1) realization fluorine system of the invention system central air-conditioning is combined with air energy water heater, and recycling discharge heat is raw for giving birth to
Domestic hot-water is produced, there is huge energy saving effect.
(2) the air energy thermal water central air conditioner system of type of the present invention, realized with a kind of machine needs two kinds of machines (center originally
Air-conditioning, air energy water heater) be just able to achieve all functions: cooling supply, heat supply, hot water, cold air hot water, ventilation, dehumidifying, except damp and hot
Water, and there is energy conservation and save operating cost effect.It can be used separately as air conditioner, air energy water heater.
Detailed description of the invention
Fig. 1 is the schematic diagram one for implementing air energy thermal water central air conditioner system according to the present invention.
Fig. 2 is the schematic diagram two for implementing air energy thermal water central air conditioner system according to the present invention.
It Fig. 3, is the schematic diagram three for implementing air energy thermal water central air conditioner system according to the present invention
It Fig. 4, is the schematic diagram four for implementing air energy thermal water central air conditioner system according to the present invention
It Fig. 5, is the schematic diagram five for implementing air energy thermal water central air conditioner system according to the present invention
It Fig. 6, is the schematic diagram six for implementing air energy thermal water central air conditioner system according to the present invention
Specific embodiment
Embodiment one
With reference to the accompanying drawing 1, attached drawing 2, attached drawing 3, specific embodiments of the present invention will be described in detail, but it should reason
The protection scope of the present invention is not limited by the specific implementation manner for solution.
Unless otherwise explicitly stated, otherwise in entire disclosure and claims, term " includes " or its change
Changing such as "comprising" or " including " etc. will be understood to comprise stated element or component, and not exclude other members
Part or other component parts.
As shown in Figure 1, Figure 2, Fig. 3, shown in diagram 4, a kind of air energy thermal water central hollow of specific embodiment according to the present invention
Adjusting system, including compressor 1,21,22,23 cistern assembly 3 of four-way valve, common condenser work package 4, indoor units 51,52,
53,54, shut-off valve 61,62,63 and control valve group 71,72,73,74.It is specific as follows:
Compressor 1 has exhaust outlet and gas returning port.First four-way valve 21 has first to fourth interface, i.e. first interface
A1, second interface b1, third interface c1 and the 4th interface d1.First interface a1 is connect with the exhaust outlet of compressor 1, the 4th interface
D1 is connect with the gas returning port of compressor 1, the same time, and wherein one in first interface a1 and second interface b1 and third interface c1
One of conducting in a conducting, the 4th interface d1 and second interface b1 and third interface c1;
Second four-way valve 22 has the 5th to the 8th interface, i.e. the 5th interface a2, the 6th interface b2, the 7th interface c2 and the
Eight interface d2.5th interface a2 is connect with the second interface b1 in the first four-way valve 22, returning in the 8th interface d2 and compressor 1
Port connects, the same time, one of conducting in the 5th interface a2 and the 6th interface b2 and the 7th interface c2, the 8th interface
One of conducting in d2 and the 6th interface b2 and the 7th interface c2.
Third four-way valve 23 has the 9th to the 12nd interface, i.e. the 9th interface a3, the tenth interface b3, the 11st interface c3
With the 12nd interface d3.9th interface a3 is connect with the third interface c2 in the first four-way valve 21, the 12nd interface d3 and compression
Gas returning port in machine 1 connects, the same time, one of them in the 9th interface a3 and the tenth interface b3 and the 11st interface c3 is led
It is logical, one of conducting in the 11st c3 interface and the tenth interface b3 and the 11st interface c3.
Cistern assembly 3 is insulated water tank.Water tank 3 is equipped with inlet and outlet, is equipped with water valve at inlet and outlet.
Heat exchange coil is equipped in water tank 3, the boiler refrigerant inlet is connect flatly with the tenth of the third four-way valve, the heat
Water tank refrigerant outlet is connect by control valve group with shared condenser assembly, the hot water water inlet and tap water
Mouth connection, the hot water water outlet are connected with using sanitary ware or water valve, the hot water floor heating interface and ground
Heating coil road is connected, and heat exchange coil is equipped in the water tank, the heat exchange coil is for aqueous solution in high temperature refrigerant and water tank
Carry out heat exchange.
Preferably, common condenser component, the same time, it was condenser or evaporator, and the work package connects for four totally
Mouthful, wherein the 7th interface of one end V3 of one group of inlet and outlet and the second four-way valve, are connected by shut-off valve, other end V4 with it is described
Second control valve group is connect with indoor units;One end V1 of another group of inlet and outlet is connect with the tenth interface of third four-way valve, separately
One end V2 is connect by the first control valve group with the refrigerant outlet of boiler;
Indoor units, refrigerant inlet end is connect by third control valve group with the 6th interface of the second four-way valve, another
End one branch of refrigerant outlet connect with second control valve group with common condenser and another branch of refrigerant outlet is logical
Valve is crossed to connect with compressor inleting pipe;
The process of the present embodiment air energy thermal water central air conditioner system is as follows:
Produce hot water process:
Realize that the refrigeration cycle flow direction of hot water is as follows: refrigerant medium is discharged from refrigeration compressor 1, connects through four-way valve 21 first
Mouth a1, first interface a1 and third interface c1 conducting, refrigerant medium flow to the 9th interface a3 of four-way valve 23 through third interface c1,
9th interface a3 of four-way valve 23 is connected with the 11st interface c3, and refrigerant medium enters insulated water tank 3 by the 11st interface c3,
Refrigerant is come out through first throttle element 71 from insulated water tank, common condenser 4, by the tenth interface b3 of four-way valve 23, four
Tenth interface b3 of port valve 23, b3 interface are connected with the 12nd interface d3, and refrigerant medium is flowed using the 12nd interface d3 through E1
Return compressor 1.
Produce cold air+hot water process:
Realize that cold air+hot water refrigeration cycle flow direction is as follows: refrigerant medium is discharged from refrigeration compressor 1, through four-way valve 21
First interface a1, first interface a1 and third interface c1 conducting, refrigerant medium flow to the a3 of four-way valve 23 through third interface c1, and four
9th interface a3 of port valve 23 is connected with the 11st interface c3, and refrigerant medium enters insulated water tank 3 by the 11st interface c3, from
Insulated water tank comes out refrigerant through first throttle element 71, and common condenser 4, by the tenth interface b3 of four-way valve 23, b3 is connect
Mouth is connected with the 12nd interface d3, and refrigerant medium is using the 12nd interface d3, through E1 to the 4th interface d1 of the first four-way valve, until
B2, through control valve group 73, through indoor units, until shut-off valve 61 flows back to compressor 1 through E3
Produce hot gas process:
Realize that the refrigeration cycle flow direction of hot water is as follows: refrigerant medium is discharged from refrigeration compressor 1, connects through four-way valve 21 first
Mouth a1, first interface a1 and second interface b1 conducting, refrigerant medium flow to the a2 of four-way valve 22, four-way valve 22 through second interface b1
The 6th interface b2, through control valve group 73, until indoor units, through control valve group 72, through common condenser 4, until shut-off valve 63,
Seven interface c2 of the second four-way valve, eight d2 through the second four-way valve are flow to, through E2, interface compression machine 1
Produce dehumidifying+hot water process:
Realize that dehumidifying+hot water refrigeration cycle flow direction is as follows: refrigerant medium is discharged from refrigeration compressor 1, through four-way valve 21
First interface a1, first interface a1 and third interface c1 conducting, refrigerant medium flow to the a3 of four-way valve 23 through third interface c1, and four
9th interface a3 of port valve 23 is connected with the 11st interface c3, and refrigerant medium enters insulated water tank 3 by the 11st interface c3, from
Insulated water tank comes out refrigerant through first throttle element 71, and common condenser 4, by the tenth interface b3 of four-way valve 23, b3 is connect
Mouth is connected with the 12nd interface d3, and refrigerant medium is using the 12nd interface d3, through E1 to the 4th interface d1 of the first four-way valve, until
B2, through control valve group 73, through indoor units, until shut-off valve 61 flows back to compressor 1 through E3.
Embodiment two
Such as Fig. 5, a kind of air energy thermal water central air conditioner system of specific embodiment according to the present invention, including compressor 1,
Four-way valve 21,22 cistern assemblies 3, common condenser work package 4, indoor units 51,52,53,54, shut-off valve 61,62,63,
64 and control valve group 71,72,73,74.It is specific as follows:
Compressor 1 has exhaust outlet and gas returning port.First four-way valve 21 has first to fourth interface, i.e. first interface
A1, second interface b1, third interface c1 and the 4th interface d1.First interface a1 is connect with the exhaust outlet of compressor 1, the 4th interface
D1 is connect with compressor return air, the same time, one of them in first interface a1 and second interface b1 and third interface c1 is led
Logical, in the 4th interface d1 and second interface b1 and third interface c1 one of conducting;
Second four-way valve 22 has the 5th to the 8th interface, i.e. the 5th interface a2, the 6th interface b2, the 7th interface c2 and the
Eight interface d2.5th interface a2 is connect with the second interface b1 in the first four-way valve 22, returning in the 8th interface d2 and compressor 1
Port connects, the same time, one of conducting in the 5th interface a2 and the 6th interface b2 and the 7th interface c2, the 8th interface
One of conducting in d2 and the 6th interface b2 and the 7th interface c2.
Cistern assembly 3 is insulated water tank.Water tank 3 is equipped with inlet and outlet, is equipped with water valve at inlet and outlet.
It is equipped with heat exchange coil in water tank 3, the 6th mouthful of the boiler refrigerant inlet and second four-way valve is connect, the hot water
Case refrigerant outlet is connect by control valve group with shared condenser assembly, the hot water water inlet and the tap water mouth of a river
Connection, the hot water water outlet are connected with using sanitary ware or water valve, the hot water floor heating interface and floor heating
Pipeline is connected, and is equipped with heat exchange coil in the water tank, the heat exchange coil for aqueous solution in high temperature refrigerant and water tank into
Row heat exchange.
Preferably, common condenser component, the same time, it was condenser or evaporator, and the work package connects for four totally
Mouthful, wherein one end V3 of one group of inlet and outlet is connect with the third interface of the first four-way valve by shut-off valve, other end V4 with it is described
Second control valve group is connect with indoor units;One end V1 of another group of inlet and outlet is connect with the 7th interface of the second four-way valve, separately
One end V2 is connect by the first control valve group with the refrigerant outlet of boiler;
Indoor units, refrigerant inlet end pass through shut-off valve by the third interface of third control valve group and the first four-way valve
Connection, one branch of other end refrigerant outlet connect with second control valve group with common condenser and refrigerant outlet
Another branch is connect by valve and compressor inleting pipe;
Embodiment three
Such as Fig. 6, a kind of air energy thermal water central air conditioner system of specific embodiment according to the present invention, including compressor 1,
Four-way valve 21,22 cistern assemblies 3, common condenser work package 4, indoor units 51,52,53,54, shut-off valve 61,62,63,
64 and control valve group 71,72,73,74.It is specific as follows:
Compressor 1 has exhaust outlet and gas returning port.First four-way valve 21 has first to fourth interface, i.e. first interface
A1, second interface b1, third interface c1 and the 4th interface d1.First interface a1 is connect with the exhaust outlet of compressor 1, the 4th interface
D1 is connect with common condenser, the same time, one of them in first interface a1 and second interface b1 and third interface c1 is led
Logical, in the 4th interface d1 and second interface b1 and third interface c1 one of conducting;
Second four-way valve 22 has the 5th to the 8th interface, i.e. the 5th interface a2, the 6th interface b2, the 7th interface c2 and the
Eight interface d2.5th interface a2 is connect with the second interface b1 in the first four-way valve 22, returning in the 8th interface d2 and compressor 1
Port connects, the same time, one of conducting in the 5th interface a2 and the 6th interface b2 and the 7th interface c2, the 8th interface
One of conducting in d2 and the 6th interface b2 and the 7th interface c2.
Cistern assembly 3 is insulated water tank.Water tank 3 is equipped with inlet and outlet, is equipped with water valve at inlet and outlet.
It is equipped with heat exchange coil in water tank 3, the 6th mouthful of the boiler refrigerant inlet and second four-way valve is connect, the hot water
Case refrigerant outlet is connect by control valve group with shared condenser assembly, the hot water water inlet and the tap water mouth of a river
Connection, the hot water water outlet are connected with using sanitary ware or water valve, the hot water floor heating interface and floor heating
Pipeline is connected, and is equipped with heat exchange coil in the water tank, the heat exchange coil for aqueous solution in high temperature refrigerant and water tank into
Row heat exchange.
Preferably, common condenser component, the same time, it was condenser or evaporator, and the work package connects for four totally
Mouthful, wherein the 4th interface of one end V3 of one group of inlet and outlet and the first four-way valve, other end V4 and second control valve group and
Indoor units connection;One end V1 of another group of inlet and outlet is connect with the 7th interface of the second four-way valve, and other end V2 passes through first
Control valve group is connect with the refrigerant outlet of boiler;
Indoor units, refrigerant inlet end is connect by third control valve group with the third interface of the first four-way valve, another
End one branch of refrigerant outlet connect with second control valve group with common condenser and another branch of refrigerant outlet is logical
Valve is crossed to connect with compressor inleting pipe;
The aforementioned description to specific exemplary embodiment of the invention is in order to illustrate and illustration purpose.These descriptions
It is not wishing to limit the invention to disclosed precise forms, and it will be apparent that according to the above instruction, can much be changed
And variation.The purpose of selecting and describing the exemplary embodiment is that explaining specific principle of the invention and its actually answering
With so that those skilled in the art can be realized and utilize a variety of different exemplary implementation schemes of the invention and
Various chooses and changes.The scope of the present invention is intended to be limited by claims and its equivalents.
Claims (10)
1. a kind of air energy thermal water central air conditioner system, which is characterized in that converge the second four-way valve including the first four-way valve coupling
And third four-way valve, the second four-way valve coupling fluorine system system central air-conditioning cooling cycle system and third four-way valve coupling air energy
The small cooling cycle system of water heater forms big refrigeration cycle, two mini system common condensers, shared compressor;And
Cooling cycle system and the first four-way valve coupling air energy thermal water are turned down including the second four-way valve coupling fluorine system system central hollow
The small cooling cycle system of device forms big refrigeration cycle, two mini system common condensers, shared compressor;And
Pass through control valve group and shut-off valve control operation hot water or cold water processed, dehumidifying+hot water, refrigeration+hot water, heating gas, water heating.
2. air energy thermal water central air conditioner system according to claim 1 characterized by comprising
Compressor with exhaust outlet and gas returning port, or has air injection enthalpy-increasing entrance;And
First four-way valve has first to fourth interface, and the first interface is connect with the exhaust outlet of the compressor, described
4th interface is connect with the muffler of the compressor, in the same time, the first interface and second interface and third interface
In one of conducting, one of conducting in the 4th interface and the second interface and third interface;
Second four-way valve has the 5th to the 8th interface, the second interface in the 5th interface and first four-way valve
Connection, the 8th interface are connect with the muffler of the compressor, and the 6th interface passes through third control valve group and interior
Machine refrigerant import conducting, the 7th interface are connected with shared condenser refrigerant gas outlet by valve, in the same time,
One of conducting in 5th interface and the 6th interface and the 7th interface, the 8th interface and the 6th interface and
One of conducting in 7th interface;
Third four-way valve, has the 9th to the 12nd interface, and the 9th interface connects with the third in first four-way valve
Mouth connection, the 12nd interface are connect with the muffler in the compressor, and the tenth interface and common condenser are wherein
Another entrance, the 11st interface are connected with boiler refrigerant inlet, the 9th interface and the tenth interface and the tenth
One of conducting in one interface, the 11st interface are led with one of them in the tenth interface and the 11st interface
It is logical;And
The 7th interface of second four-way valve connects the one of entrance of common condenser, and installation can shut-off valve among connecting pipe;
And
Boiler refrigerant outlet is connect by control valve group with one import of common condenser;And
Indoor units refrigerant outlet is connect by control valve group with one import of common condenser.
3. air energy thermal water central air conditioner system according to claim 1 characterized by comprising
First four-way valve has first to fourth interface, and the first interface is connect with the exhaust outlet of the compressor, described
Second interface is connect with the 5th interface of the second four-way valve, and the third interface is connect by shut-off valve with indoor units, and described the
Four interfaces by can shut-off valve connect with the muffler of the compressor, in the same time, the first interface and second interface
With one of conducting in third interface, the 4th interface is led with one of them in the second interface and third interface
It is logical;
Second four-way valve has the 5th to the 8th interface, the second interface in the 5th interface and first four-way valve
Connection, the 8th interface are connect with the muffler of the compressor, and the 6th interface is led with the 9th interface of third four-way valve
Logical, the 7th interface with shared condenser refrigerant gas outlet by being connected, in the same time, the 5th interface and the 6th
One of conducting in interface and the 7th interface, wherein one in the 8th interface and the 6th interface and the 7th interface
A conducting;
Third four-way valve, has the 9th to the 12nd interface, and the 9th interface connects with the 6th in second four-way valve
Mouth connection, the 12nd interface are connect with the muffler in the compressor, and the 11st interface is led with common condenser
Logical, the tenth interface is connected with boiler refrigerant inlet, in the 9th interface and the tenth interface and the 11st interface
One of conducting, the 11st interface and one of conducting in the tenth interface and the 11st interface;And
The 7th interface of second four-way valve and the first four-way valve third interface, by can shut-off valve connect;And
Boiler refrigerant outlet is connect by control valve group with one import of common condenser;And
Indoor units refrigerant outlet is connect by control valve group with one import of common condenser.
4. air energy thermal water central air conditioner system according to claim 1 characterized by comprising
First control valve group, one end are connect with the common condenser, another end and the boiler refrigerant outlet
Connection, first control valve group are with restricting element and with the valve or valve group of turn-off function;
Second control valve group, one end are connect with the common condenser, the other end with described indoor unit component refrigerant one
Branch outlet connection, second control valve group are with restricting element and with the valve or valve group of turn-off function;And
Third control valve group, one end are connect with the indoor unit component refrigerant inlet, and the of the other end and the second four-way valve
The connection of six interfaces, the third control valve group are with restricting element and with the valve or valve group of turn-off function.
5. air energy thermal water central air conditioner system according to claim 1 characterized by comprising
First four-way valve has first to fourth interface, and the first interface is connect with the exhaust outlet of the compressor, described
4th interface is connect with one refrigerant outlet of the common condenser, and the third interface and indoor units refrigerant inlet connect
Connect, in the same time, one of conducting in the first interface and second interface and third interface, the 4th interface with
One of conducting in the second interface and third interface;
Second four-way valve has the 5th to the 8th interface, the second interface in the 5th interface and first four-way valve
Connection, the 8th interface are connect with the muffler of the compressor, and the 6th interface is connected with boiler refrigerant inlet,
7th interface is connected by valve with one gas outlet of shared condenser refrigerant, in the same time, the 5th interface
With one of conducting in the 6th interface and the 7th interface, in the 8th interface and the 6th interface and the 7th interface
One of conducting;And
Boiler refrigerant outlet is connect by control valve group with one import of common condenser;And
Indoor units refrigerant outlet is connect by control valve group with one import of common condenser.
6. air energy thermal water central air conditioner system according to claim 1, which is characterized in that the indoor units collect system
Cryogen outlet is divided into two interfaces, and an interface is connect with the second control valve group, another interface passes through shut-off valve and compression
The general pipeline connection of machine air-breathing.
7. air energy thermal water central air conditioner system according to claim 1, work refrigeration cycle, comprising:
The hot water operating mode, refrigerant flow direction flow to the first four-way valve first interface for compressor and enter, and third interface goes out, warp
The 9th interface of third four-way valve enters, and the 11st interface goes out, until boiler refrigerant inlet, boiler refrigerant outlet to the first control
Valve group processed, common condenser, the 12nd interface of third four-way valve go out, and through the second shut-off valve, return compressor air suction mouth pipe;And
The hot gas operating mode, refrigerant flow direction flow to the first four-way valve first interface for compressor and enter, and second interface goes out, until
The 5th interface of second four-way enters, and the 6th interface goes out, until third control valve, through indoor units and the second control valve, through sharing condensation
Device, third shut-off valve, the 7th interface through the second four-way valve is into the 8th interface goes out, and returns compressor air suction mouth pipe;And
Cold air+the hot water and dehumidifying+hot water operating mode, refrigerant flow direction are that compressor flows to the first four-way valve first interface
Enter, third interface goes out, and enters through the 9th interface of third four-way valve, and the 11st interface goes out, until boiler refrigerant inlet is into boiler
Refrigerant outlet goes out, until the first control valve group, through common condenser, until the tenth interface of third four-way valve goes out, the 12nd interface goes out,
Enter by the 4th interface of the first four-way valve, second interface goes out, and flow to the 5th interface of the second four-way valve and enters, and the 6th interface goes out, through
Three control valves, into indoor units refrigerant inlet into indoor units refrigerant outlet goes out, until the first shut-off valve, returns compressor and inhale
Port pipe.
8. air energy thermal water central air conditioner system according to claim 1, work refrigeration cycle, comprising:
The hot water operating mode, refrigerant flow direction flow to the first four-way valve first interface for compressor and enter, and second interface goes out, warp
The 5th interface of second four-way valve enters, and goes out in the 6th interface, until the 9th interface of third four-way valve enters, the tenth interface goes out, until boiler
Refrigerant inlet, boiler refrigerant outlet to the first control valve group, common condenser, the 11st interface of third four-way valve enter,
12nd interface goes out, and through shut-off valve, returns compressor air suction mouth pipe;And
The hot gas operating mode, refrigerant flow direction flow to the first four-way valve first interface for compressor and enter, and third interface goes out, until
Third control valve, through indoor units and the second control valve, through common condenser, the second shut-off valve, the through the second four-way valve the 7th
Interface is into the 8th interface goes out, and returns compressor air suction mouth pipe;And
Cold air+the hot water and dehumidifying+hot water operating mode, refrigerant flow direction are that compressor flows to the first four-way valve first interface
Entering, second interface goes out, and enters through the 5th interface of the second four-way valve, go out in the 6th interface, until the 9th interface of third four-way valve enters, the tenth
Interface goes out, until boiler refrigerant inlet, boiler refrigerant outlet to the first control valve group, common condenser, until the one or four
Port valve third interface outlet pipe, through third control valve, into indoor units refrigerant inlet into, indoor units refrigerant outlet goes out, until
First shut-off valve returns compressor air suction mouth pipe.
9. air energy thermal water central air conditioner system according to claim 1, work refrigeration cycle, comprising:
The hot water operating mode, refrigerant flow direction flow to the first four-way valve first interface for compressor and enter, and second interface goes out, warp
The 5th interface of second four-way valve enters, and the 6th interface goes out, until boiler refrigerant inlet, boiler refrigerant outlet to the first control
Valve group, common condenser, through the 7th interface of second the second four-way valve of shut-off valve into the 8th interface goes out, and returns compressor air suction mouth pipe;
And
The hot gas operating mode, refrigerant flow direction flow to the first four-way valve first interface for compressor and enter, and third interface goes out, until
Third control valve, through indoor units and the second control valve, through common condenser, the second shut-off valve, the through the second four-way valve the 7th
Interface is into the 8th interface goes out, and returns compressor air suction mouth pipe;And
Cold air+the hot water and dehumidifying+hot water operating mode, refrigerant flow direction are that compressor flows to the first four-way valve first interface
Enter, second interface goes out, and enters through the 5th interface of the second four-way valve, and the 6th interface goes out, until boiler refrigerant inlet is into boiler system
Cryogen exports out, until the first control valve group, through common condenser, until the 4th interface of the first four-way valve goes out, by the first four-way valve
Third interface goes out, through third control valve, into indoor units refrigerant inlet into indoor units refrigerant outlet goes out, until first closes
Disconnected valve, returns compressor air suction mouth pipe.
10. a kind of air energy thermal water central air conditioner system, which is characterized in that summer executes preferential operational mode of freezing, winter holds
Row hot water mode of priority, southern area spring execute the parallel operational mode of dehumidifying+hot water, autumn executes hot water+cold air and hot water
Preferential operation reserve;And
Preferential operational mode of freezing is executed, is controlled based on room temperature, domestic hot-water is operational mode byproduct;And
Winter executes the preferential operational mode of hot water, refers under operation heating gas mode, when boiler temperature is down to lower limit value,
Execute the supply preferential operational mode of domestic hot-water;And
When temperature is higher than some pre-set value, and when being lower than some value, if humidity reaches some pre-set value, operation dehumidifying
+ hot-water mode;And
Autumn executes hot water+cold air and hot water is preferential, executes this operational mode, hot water is major product, and cold air is byproduct, when cold
Unsaturated vapor executes the preferential operation reserve of hot water when matching hot-water supply.
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