CN207881284U - Air source heat pump evaporator tower and air source heat pump system - Google Patents

Air source heat pump evaporator tower and air source heat pump system Download PDF

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Publication number
CN207881284U
CN207881284U CN201820077485.8U CN201820077485U CN207881284U CN 207881284 U CN207881284 U CN 207881284U CN 201820077485 U CN201820077485 U CN 201820077485U CN 207881284 U CN207881284 U CN 207881284U
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CN
China
Prior art keywords
heat pump
air source
source heat
evaporator
placement
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.)
Withdrawn - After Issue
Application number
CN201820077485.8U
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Chinese (zh)
Inventor
朱宁
武赏磊
朱建军
徐卫国
姜维权
李继民
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Beijing Sijitong Energy Technology Co Ltd
Original Assignee
Beijing Sijitong Energy Technology Co Ltd
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Publication date
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Priority to CN201820077485.8U priority Critical patent/CN207881284U/en
Application granted granted Critical
Publication of CN207881284U publication Critical patent/CN207881284U/en
Withdrawn - After Issue legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a kind of air source heat pump evaporator tower and air source heat pump systems, the air source heat pump evaporator tower includes support construction and evaporator module, more than two evaporator modules are installed in the support construction, the evaporator module side is equipped with wind turbine, each evaporator module is equipped at least one refrigerant inlet and one outlet, the refrigerant exit is for connecting air source heat pump compressor, and the refrigerant inlet is for connecting expansion valve.The utility model individually integrates the evaporator of air source heat pump, and the arrangement floor space of air source heat pump totality can be reduced by using vertical space, cold-island efect can also be reduced, air source heat pump system structure can be made compacter, it can be used for the occasion that large area building utilization heat pump carries out heating, reduce the area of occupied ground.

Description

Air source heat pump evaporator tower and air source heat pump system
Technical field
The utility model is related to heat pump application fields, and in particular to a kind of air source heat pump evaporator tower and air source heat pump System.
Background technology
Air source heat pump is exactly to generate thermal energy using the energy in air, becomes high temperature after system high efficiency collection heat integration Heat source, for warming oneself or hot-water supply, whole system collecting efficiency is high.In the prior art when using multiple air source heat pumps, It is big that there are occupied spaces, and after discharge the case where generation cold-island efect, and cold-island efect is the air-source heat in large area arrangement Pump, middle section air circulation is poor, and constant temperature drops, and causes air source heat pump overall effect low.
Utility model content
The utility model provides a kind of reduction arrangement overall space to solve the deficiencies in the prior art, and Eliminate the air source heat pump evaporator tower of cold-island efect.
Technical solution adopted by the utility model to solve its technical problems is:
A kind of air source heat pump evaporator tower, including support construction and evaporator module are equipped in the support construction More than two evaporator modules, the evaporator module side are equipped with wind turbine, and each evaporator module is equipped at least one Refrigerant inlet and a refrigerant exit, for connecting air source heat pump compressor, the refrigerant inlet is used for the refrigerant exit Connect expansion valve.
The support construction includes column and holder, and the column is equipped with multilayer bracket, and every layer of holder is equipped at least One evaporator module.
The evaporator module is layered setting along the vertical direction of the column.
The support construction further includes the first placement-face, the second placement-face and third placement-face being arranged in column periphery, First placement-face and the second placement-face are oppositely arranged, and the third placement-face is arranged in first placement-face and the second cloth The same side in face is set, Multilayer evaporator module is provided on the inside of first placement-face, the second placement-face and third placement-face.
The evaporator module includes refrigerant inlet main pipe, refrigerant exit main pipe, multigroup refrigerant branch pipe, thermofin and temperature Detector is spent, string is equipped with thermofin on multigroup refrigerant branch pipe, and the import of every group of refrigerant branch pipe is separately connected refrigerant inlet main pipe, The outlet of every group of refrigerant branch pipe is separately connected refrigerant exit main pipe, and the hygrosensor is mounted on thermofin.
The air source heat pump compressor is arranged compresses seat in the plane in the outside of the support construction or the air source heat pump In on holder, each layer of evaporator module connects the same air source heat pump compressor or the connection of Multilayer evaporator module is same One air source heat pump compressor.
Further, multiple evaporator modules correspond to a wind turbine or a wind turbine corresponds to an evaporator module, Or an evaporator module corresponds to multiple wind turbines;The wind turbine is placed inside of the housing.
Acoustical cotton is installed in the support construction.
The bottom of the bottom of the evaporator module, the bottom of wind turbine and/or air source heat pump compressor is installed with Beam.
The utility model also provides a kind of air source heat pump system, including above-mentioned air source heat pump evaporator tower.
Compared with prior art, the utility model individually integrates the evaporator of air source heat pump, and by using Vertical space can reduce the arrangement floor space of air source heat pump totality, can also reduce cold-island efect, can make air source heat pump System structure is compacter, can be used for the occasion that large area building utilization heat pump carries out heating, reduces the area of occupied ground.
Description of the drawings
Fig. 1 is the first structural schematic diagram for the air source heat pump evaporator tower that the utility model embodiment provides;
Fig. 2 is second of structural schematic diagram of the air source heat pump evaporator tower that the utility model embodiment provides;
Fig. 3 is the third structural schematic diagram for the air source heat pump evaporator tower that the utility model embodiment provides;
Fig. 4 is the structural schematic diagram for the evaporator module that the utility model embodiment provides;
Fig. 5 is the structural schematic diagram for the air source heat pump system that the utility model embodiment provides.
In figure:1 support construction, 2 evaporator modules, 3 wind turbines, 4 air source heat pump compressors, 5 columns, 6 holders, 7 first Placement-face, 8 second placement-faces, 9 third placement-faces, 10 refrigerant inlet main pipes, 11 refrigerant exit main pipes, 12 thermofins, 13 is cold The import of matchmaker's branch pipe, 14 refrigerant branch pipes, 15 air source heat pump evaporator towers, 16 four-way reversing valves, 17 expansion valves, 18 gas-liquid separations Device, 19 high-efficiency tanks.
Specific implementation mode
The utility model is described in further detail below in conjunction with the accompanying drawings, but not as the restriction to the utility model.
Referring to Fig. 1, Fig. 2 and Fig. 3, a kind of air source heat pump evaporator tower, including support construction 1 and evaporator module 2, branch More than two evaporator modules 2 are installed, 2 side of the evaporator module is equipped with wind turbine 3, each evaporator on support structure 1 Module 2 is equipped at least one refrigerant inlet and a refrigerant exit, and the refrigerant exit is for connecting air source heat pump compression Machine 4, the refrigerant inlet is for connecting expansion valve.
The utility model is integrated in a support by being rearranged to air source heat pump internal part, by multiple evaporators In structure, heat pump can be arranged with bilayer or multilayer in construction, further decrease the occupied space of heat pump.
On the basis of the above embodiments, support construction 1 includes column 5 and holder 6 to the present embodiment, and column 5 is equipped with more Layer holder 6, every layer of holder 6 are equipped at least one evaporator module 2.
By the layered arrangement evaporator module of the utility model, spacing is same between ensureing each evaporator module When, save entire area occupied.The support construction of the utility model can fix single-layer or multi-layer evaporator module, support knot Structure can realize that evaporator module can be added or be reduced to front-rear direction, left and right directions, upper and lower directions, and can be changed according to architectural environment Become evaporator turriform shape.
On the basis of the above embodiments, the support construction further includes the first cloth being arranged in column periphery to the present embodiment Face 7, the second placement-face 8 and third placement-face 9 are set, the first placement-face 7 and the second placement-face 8 are oppositely arranged, and third placement-face 9 is set It sets in the same side of first placement-face, 7 and second placement-face 8, the first placement-face 7, the second placement-face 8 and third placement-face 9 Inside be provided with Multilayer evaporator module 2.
The evaporator module of the utility model is arranged as three faces and fixes Multilayer evaporator, U at U-shaped three-dimensional arrangement, U-shaped solid It is air inlet, the direction that U-shaped mouth enters towards wind at type mouth.U-shaped three-dimensional arrangement can increase the stability of structure and reduce space Occupancy, the arrangement of the utility model is not limited to three-dimensional shapes of U-shaped or tablet moulding or other splicings.
Referring to Fig. 4, on the basis of the above embodiments, evaporator module 2 includes refrigerant inlet main pipe 10 to the present embodiment, cold Matchmaker exports main pipe 11, thermofin 12, hygrosensor and multigroup refrigerant branch pipe 14, and string is equipped with heat transfer on multigroup refrigerant branch pipe 14 The import 13 of fin 12, every group of refrigerant branch pipe is separately connected refrigerant inlet main pipe 10, and the outlet of every group of refrigerant branch pipe is separately connected Refrigerant exit main pipe 11, hygrosensor are mounted on thermofin 12.
Evaporator is designed as modular structure by the utility model, and modularization can simplify the investigation of mechanical disorder and prevent refrigerant Leak source impacts whole system, and can adjust the quantity of module according to the quantity of heat pump and watt level, to increasing or Reduce module.Refrigerant branch pipe is fixedly connected with thermofin, and refrigerant branch pipe transmits heat by thermofin.According to the number of detection According to control system, the start and stop and defrost that control system controls wind turbine and heat pump by the data of detection judge.
Referring to Fig. 2 and Fig. 3, on the basis of the above embodiments, the setting of air source heat pump compressor 4 is supporting the present embodiment The outside of structure or air source heat pump compressor 4 are located on holder 6, and each layer of evaporator module 2 connects the same air-source Heat pump compressor 4 or Multilayer evaporator module 2 connect the same air source heat pump compressor.
When the endotherm area of monolayer evaporation device module is sufficiently large, air source heat pump compressor can be equipped with single layer, it is different The heat pump system of layer passes through water system connection in series-parallel outward supplying heat;When monolayer evaporation device area is not big enough, can be equipped with multilayer union One or more air source heat pump compressor concentrates outward supplying heat.
The air source heat pump compressor of the utility model can be placed on holder, can also be as shown in figure 3, air-source is warm It pumps compressor 4 to be arranged other than holder 6, the outside of entire support construction, as needed, each evaporator module can the companies of correspondence Connect an air source heat pump compressor, can also the imports of multiple evaporator modules be connected on same total pipeline, pass through manifold Road connects same air source heat pump compressor.
Referring to Fig. 1, Fig. 2 and Fig. 3, the present embodiment on the basis of the above embodiments, further, multiple evaporator modules 2 one wind turbine 3 of correspondence or one evaporator module 2 of correspondence of wind turbine 3 or an evaporator module 2 correspond to multiple wind turbines 3; Wind turbine 3 is placed inside of the housing, and wind direction is outside outlet air.
Similarly, according to the design needs, a wind turbine can give multiple evaporator modules to blow simultaneously, can also a typhoon Machine is corresponded to blows to an evaporator module.
The present embodiment on the basis of the above embodiments, acoustical cotton is equipped in the support construction.Acoustical cotton is mounted on The position of wind flow is not influenced.
Multiple evaporator modules, wind turbine and air source heat pump compressor can be integrated in a shell by the utility model It is interior, acoustical cotton can be set in shell, the noise for eliminating system generation.
The present embodiment on the basis of the above embodiments, in order to ensure the service life of equipment, the evaporator module The bottom of the bottom and/or air source heat pump compressor of bottom and wind turbine is installed with beam.
Referring to Fig. 5, the utility model also provides a kind of air source heat pump system, including above-mentioned air source heat pump evaporator Tower 15.
Air source heat pump evaporator tower 15 can connect multigroup heat pump, the refrigerant exit main pipe of air source heat pump evaporator tower 15 Air source heat pump compressor 4 is connected by four-way reversing valve 16, air source heat pump compressor 4 connects gas-liquid separator 18, then High-efficiency tank 19 is connected through four-way reversing valve 16 again, the refrigerant inlet main pipe of air source heat pump evaporator tower 15 connects expansion valve 17, Expansion valve 17 connects high-efficiency tank 19.
The utility model is integrated in a support construction by designing evaporator module, and by multiple evaporator modules On, it not only ensure that the directly necessary preset clearance of each evaporator module, but also save installation space, can be applied to using more In the integrated system of a heat pump.
Embodiment described above, only one kind of the utility model more preferably specific implementation mode, the skill of this field The usual variations and alternatives that art personnel carry out within the scope of technical solutions of the utility model should all be included in the guarantor of the utility model It protects in range.

Claims (10)

1. a kind of air source heat pump evaporator tower, which is characterized in that including support construction and evaporator module, the support construction On more than two evaporator modules are installed, the evaporator module side is equipped with wind turbine, and each evaporator module is equipped with At least one refrigerant inlet and a refrigerant exit, the refrigerant exit is for connecting air source heat pump compressor, the refrigerant Import is for connecting expansion valve.
2. air source heat pump evaporator tower according to claim 1, which is characterized in that the support construction includes column and branch Frame, the column are equipped with multilayer bracket, and every layer of holder is equipped at least one evaporator module.
3. air source heat pump evaporator tower according to claim 2, which is characterized in that the evaporator module is along described vertical The vertical direction layering setting of column.
4. air source heat pump evaporator tower according to claim 2, which is characterized in that the support construction further includes that setting exists The first placement-face, the second placement-face and the third placement-face of column periphery, first placement-face and the second placement-face are opposite to be set It sets, the third placement-face is arranged in the same side of first placement-face and the second placement-face, first placement-face, second It is provided with Multilayer evaporator module on the inside of placement-face and third placement-face.
5. air source heat pump evaporator tower according to claim 1, which is characterized in that the evaporator module include refrigerant into Dry pipe, refrigerant exit main pipe, multigroup refrigerant branch pipe, thermofin and hygrosensor, string, which is equipped with, on multigroup refrigerant branch pipe passes The import of hot fin, every group of refrigerant branch pipe is separately connected refrigerant inlet main pipe, and the outlet of every group of refrigerant branch pipe is separately connected refrigerant Main pipe is exported, the hygrosensor is mounted on thermofin.
6. according to any one of the claim 1-5 air source heat pump evaporator towers, which is characterized in that the air source heat pump pressure Contracting machine, which is arranged, to be located in the outside of the support construction or the air source heat pump compressor on holder;Each layer of evaporator Module connects the same air source heat pump compressor or Multilayer evaporator module connects the same air source heat pump compressor.
7. air source heat pump evaporator tower according to claim 6, which is characterized in that multiple evaporator modules correspond to one A wind turbine or wind turbine one evaporator module of correspondence or an evaporator module correspond to multiple wind turbines;The wind turbine is placed In the inside of placement-face.
8. air source heat pump evaporator tower according to claim 7, which is characterized in that be equipped with sound-absorbing in the support construction Cotton.
9. air source heat pump evaporator tower according to claim 7, which is characterized in that the bottom of the evaporator module, wind The bottom of machine and/or the bottom of air source heat pump compressor are installed with beam.
10. a kind of air source heat pump system, which is characterized in that including claim 1-9 any one of them air source heat pump evaporations Send out device tower.
CN201820077485.8U 2018-01-17 2018-01-17 Air source heat pump evaporator tower and air source heat pump system Withdrawn - After Issue CN207881284U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201820077485.8U CN207881284U (en) 2018-01-17 2018-01-17 Air source heat pump evaporator tower and air source heat pump system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201820077485.8U CN207881284U (en) 2018-01-17 2018-01-17 Air source heat pump evaporator tower and air source heat pump system

Publications (1)

Publication Number Publication Date
CN207881284U true CN207881284U (en) 2018-09-18

Family

ID=63506168

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201820077485.8U Withdrawn - After Issue CN207881284U (en) 2018-01-17 2018-01-17 Air source heat pump evaporator tower and air source heat pump system

Country Status (1)

Country Link
CN (1) CN207881284U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108375245A (en) * 2018-01-17 2018-08-07 北京四季通能源科技有限公司 Air source heat pump evaporator tower and air source heat pump system

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108375245A (en) * 2018-01-17 2018-08-07 北京四季通能源科技有限公司 Air source heat pump evaporator tower and air source heat pump system
CN108375245B (en) * 2018-01-17 2023-12-15 北京四季通能源科技有限公司 Air source heat pump evaporator tower and air source heat pump system

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AV01 Patent right actively abandoned

Granted publication date: 20180918

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Effective date of abandoning: 20231215

AV01 Patent right actively abandoned
AV01 Patent right actively abandoned