Joint debugging control system for multiple heat pump units

Through the joint control system of multiple heat pump units and the use of pipes and valves to connect them, the problems of poor regulation performance and large engineering workload of heat pump units were solved, and more efficient heat transfer and simplified production processes were achieved.

CN223376109UActive Publication Date: 2025-09-23XINJIANG HETAI THERMAL POWER CO LTD
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Patent Information

Application Number
CN202422856988.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-09-23
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

Existing heat pump units have poor regulation performance and large engineering workload, which makes standardized production difficult.

Method used

A joint control system of multiple heat pump units is used to realize water circulation and heat transmission through pipes and valve connections, including the combined use of the first water circulation pump, filter structure, solenoid valve and water tank components to achieve the control and transmission of water and heat.

Benefits of technology

The regulation performance of the heat pump unit is improved, the engineering workload is simplified, and standardized production is promoted.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of heat pump machines, in particular to a joint debugging control system for multiple heat pump units, which comprises an output structure, a water tank, a heat pump structure and a transmission structure, one side of a second pipeline in the output structure is connected with a first electromagnetic valve through a bolt, and one side of the first electromagnetic valve is connected with a third pipeline through a bolt. One side of the third pipeline is connected with a fourth pipeline through a bolt, one side of the fourth pipeline is connected with a water tank through a bolt, one side of a second pipeline in the output structure is connected with a condenser in the heat pump structure through a bolt, one side of the condenser is connected with a fifth pipeline through a bolt, and liquid can be cooled through the condenser. Liquid in the condenser can be conveyed into the compressor through the fifth pipeline, the liquid can be converted into the evaporator through the compressor, liquid in the condenser and liquid in the evaporator can be communicated through the eighth pipeline, and the conveying amount can be controlled through the second electromagnetic valve.
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Description

Technical Field

[0001] The utility model relates to the technical field of heat pumps, in particular to a joint control system for multiple heat pump units. Background Art

[0002] Heat pumps transfer heat energy from low temperatures to high temperatures by inputting a small amount of high-quality energy (such as electricity). Geothermal energy (or air, industrial waste heat) serves as a heat source for heat pump heating in the winter and a cold source for air conditioning in the summer. In winter, heat from the geothermal energy (or air, industrial waste heat) is extracted, the temperature is raised, and then supplied to indoor heating (hot water); in summer, the indoor heat is extracted and released into the geothermal energy (or air, industrial waste heat). Typically, a heat pump consumes 1kW of energy, and users can obtain over 4kW of heat or cooling. Water-source heat pumps are an energy technology that promotes energy conservation and emission reduction, and are of great significance to the development of a green economy.

[0003] However, the existing heat pump units have poor adjustable performance, and the engineering workload is large and the work is cumbersome, which is not conducive to standardized production.

[0004] Therefore, in order to solve the above problems, a joint control system of multiple heat pump units is proposed. Summary of the Invention

[0005] The purpose of the present invention is to provide a joint control system for multiple heat pump units to solve the problems mentioned in the above background technology that the existing heat pump units in the prior art have poor adjustable performance, large engineering workload, and cumbersome work that is not conducive to standardized production.

[0006] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: a joint control system for multiple heat pump units, comprising: an output structure, a water tank, a heat pump structure and a transmission structure, wherein one side of the second pipe in the output structure is connected to the first solenoid valve with a bolt, one side of the first solenoid valve is connected to the third pipe with a bolt, one side of the third pipe is connected to the fourth pipe with a bolt, one side of the fourth pipe is connected to the water tank with a bolt, one side of the second pipe in the output structure is connected to the condenser in the heat pump structure with a bolt, one side of the condenser is connected to the fifth pipe with a bolt, one side of the fifth pipe is connected to the compressor with a bolt, one side of the compressor is connected to the sixth pipe with a bolt, one side of the sixth pipe is connected to the evaporator with a bolt, one side of the evaporator is connected to the tenth pipe in the transmission structure with a bolt, and one side of the tenth pipe is connected to the second water circulation pump with a bolt.

[0007] Preferably, one side of the first water circulation pump in the output structure is connected to the first pipeline with bolts, one side of the first pipeline is connected to the filter structure with bolts, and one side of the filter structure is connected to the second pipeline with bolts.

[0008] Preferably, one side of the second pipe is connected to the first solenoid valve with bolts, one side of the first solenoid valve is connected to the third pipe with bolts, one side of the third pipe is connected to the fourth pipe with bolts, and one side of the fourth pipe is connected to the water tank with bolts.

[0009] Preferably, one side of the condenser in the heat pump structure is connected to the fifth pipe with bolts, one side of the fifth pipe is connected to the compressor with bolts, one side of the compressor is connected to the sixth pipe with bolts, one side of the sixth pipe is connected to the evaporator with bolts, one side of the evaporator is connected to the first solenoid valve with bolts.

[0010] Preferably, one side of the evaporator is connected to the eighth pipe with bolts, one side of the eighth pipe is connected to the second solenoid valve with bolts, and one side of the second solenoid valve is connected to the condenser with bolts.

[0011] Preferably, one side of the condenser is connected to the ninth pipe with bolts, the outer side of the ninth pipe is connected to the third solenoid valve with bolts, and one side of the ninth pipe is connected to the fourth pipe with bolts.

[0012] Preferably, one side of the tenth pipe in the transmission structure is connected to the second water circulation pump with bolts, one side of the second water circulation pump is connected to the eleventh pipe with bolts, the outside of the eleventh pipe is connected to the fourth solenoid valve with bolts, and one side of the eleventh pipe is connected to the water tank with bolts.

[0013] Compared with the prior art, the beneficial effects of the present invention are:

[0014] 1. The utility model is provided with a first water circulation pump, a first pipe, a filtering structure, a second pipe, a first solenoid valve, a third pipe, and a fourth pipe. The first water circulation pump can pump water, the filtering structure can filter the water, the filtered water can be transmitted through the second pipe, the output of the water can be controlled by the first solenoid valve, and the items to be transmitted can be transmitted through the third pipe and the fourth pipe.

[0015] 2. The utility model is provided with a condenser, a fifth pipeline, a compressor, a sixth pipeline, an evaporator, a seventh pipeline, an eighth pipeline, a second solenoid valve, a ninth pipeline, a third solenoid valve, a tenth pipeline, a second water circulation pump, an eleventh pipeline, and a fourth solenoid valve. The liquid can be cooled through the condenser, the liquid inside the condenser can be transmitted to the compressor through the fifth pipeline, the liquid can be converted into the evaporator through the compressor, the liquid inside the condenser and the evaporator can be interconnected through the eighth pipeline, the transmission amount can be controlled through the second solenoid valve, the flow of the liquid inside the pipeline can be limited through the third solenoid valve connected to the outside through the ninth pipeline, and water can be transmitted through the second water circulation pump connected to one side of the tenth pipeline with a drop guide. The water tank can be used to hold water containers. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the structure of the utility model;

[0017] Figure 2 It is a schematic diagram of the structure of the utility model;

[0018] Figure 3 It is a schematic diagram of the structure of the utility model;

[0019] Figure 4 It is a schematic structural perspective view of the present utility model.

[0020] In the figure: 1. Output structure; 101. First water circulation pump; 102. First pipeline; 103. Filter structure; 104. Second pipeline; 105. First solenoid valve; 106. Third pipeline; 107. Fourth pipeline; 2. Water tank; 3. Heat pump structure; 301. Condenser; 302. Fifth pipeline; 303. Compressor; 304. Sixth pipeline; 305. Evaporator; 3051. Seventh pipeline; 306. Eighth pipeline; 307. Second solenoid valve; 308. Ninth pipeline; 309. Third solenoid valve; 4. Transmission structure; 401. Tenth pipeline; 402. Second water circulation pump; 403. Eleventh pipeline; 404. Fourth solenoid valve. DETAILED DESCRIPTION

[0021] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0022] See also Figure 1-4 , an embodiment provided by the utility model:

[0023] The joint control system for multiple heat pump units includes: one side of the second pipe 104 in the output structure 1 is connected to the first solenoid valve 105 with a bolt, one side of the first solenoid valve 105 is connected to the third pipe 106 with a bolt, one side of the third pipe 106 is connected to the fourth pipe 107 with a bolt, one side of the fourth pipe 107 is connected to the water tank 2 with a bolt, one side of the second pipe 104 in the output structure 1 is connected to the condenser 301 in the heat pump structure 3 with a bolt, one side of the condenser 301 is connected to the fifth pipe 302 with a bolt, one side of the fifth pipe 302 is connected to the compressor 303 with a bolt, one side of the compressor 303 is connected to the sixth pipe 304 with a bolt, one side of the sixth pipe 304 is connected to the evaporator 305 with a bolt, one side of the evaporator 305 is connected to the tenth pipe 401 in the transmission structure 4 with a bolt, and one side of the tenth pipe 401 is connected to the second water circulation pump 402 with a bolt.

[0024] Furthermore, one side of the first water circulation pump 101 in the output structure 1 is connected to the first pipe 102 with bolts, one side of the first pipe 102 is connected to the filter structure 103 with bolts, and one side of the filter structure 103 is connected to the second pipe 104 with bolts. The first water circulation pump 101 is used to pump water, the filter structure 103 is used to filter water, and the second pipe 104 is used to transmit the filtered water.

[0025] Furthermore, one side of the second pipe 104 is bolted to the first solenoid valve 105, one side of the first solenoid valve 105 is bolted to the third pipe 106, one side of the third pipe 106 is bolted to the fourth pipe 107, and one side of the fourth pipe 107 is bolted to the water tank 2. The first solenoid valve 105 is used to control the output of water, and the third pipe 106 and the fourth pipe 107 are used to transport the items to be transported.

[0026] Furthermore, one side of the condenser 301 in the heat pump structure 3 is connected to the fifth pipe 302 with bolts, one side of the fifth pipe 302 is connected to the compressor 303 with bolts, one side of the compressor 303 is connected to the sixth pipe 304 with bolts, one side of the sixth pipe 304 is connected to the evaporator 305 with bolts, one side of the evaporator 305 is connected to the first solenoid valve 105 with bolts, the condenser 301 is used to cool the liquid, the fifth pipe 302 is used to transfer the liquid inside the condenser 301 to the compressor 303, and the compressor 303 is used to convert the liquid into the evaporator 305.

[0027] Furthermore, one side of the evaporator 305 is connected to the eighth pipe 306 with bolts, one side of the eighth pipe 306 is connected to the second solenoid valve 307 with bolts, and one side of the second solenoid valve 307 is connected to the condenser 301 with bolts. The eighth pipe 306 is used to allow the liquid inside the condenser 301 and the evaporator 305 to communicate with each other, and the second solenoid valve 307 is used to control the transmission volume.

[0028] Furthermore, one side of the condenser 301 is connected to the ninth pipe 308 with bolts, the outside of the ninth pipe 308 is connected to the third solenoid valve 309 with bolts, and one side of the ninth pipe 308 is connected to the fourth pipe 107 with bolts. The third solenoid valve 309 connected to the outside of the ninth pipe 308 is used to limit the flow of liquid inside the pipe.

[0029] Furthermore, one side of the tenth pipe 401 in the transmission structure 4 is bolted to the second water circulation pump 402, one side of the second water circulation pump 402 is bolted to the eleventh pipe 403, the outside of the eleventh pipe 403 is bolted to the fourth solenoid valve 404, one side of the eleventh pipe 403 is bolted to the water tank 2, and the second water circulation pump 402 connected by a drop guide on one side of the tenth pipe 401 is used to transmit water, and the water tank 2 is used to hold water containers.

[0030] Working principle: When in use, first start the first water circulation pump 101 to allow water to enter the filter structure 103 through the second pipe 104, then filter the water through the filter structure 103 and enter the condenser 301, then start the compressor 303 to allow the water inside the condenser 301 to be converted and enter the evaporator 305, then open the third solenoid valve 309 to allow the water inside the ninth pipe 308 to be transferred to the water tank 2 through the fourth pipe 107, and then turn on the second water circulation pump 402 to allow the water inside the evaporator 305 to be transferred to the water tank 2.

[0031] The above description is only a preferred embodiment of the present invention and does not constitute any form of limitation to the present invention. Any ordinary technician in this industry can smoothly implement the present invention as shown in the drawings and described above. However, any equivalent changes, modifications and evolutions made by technicians familiar with this profession without departing from the scope of the technical solution of the present invention using the technical content disclosed above are all equivalent embodiments of the present invention. At the same time, any equivalent changes, modifications and evolutions made to the above embodiments based on the essential technology of the present invention are still within the scope of protection of the technical solution of the present invention.

Claims

1. Joint control system for multiple heat pump units, including: An output structure (1), a water tank (2), a heat pump structure (3) and a transmission structure (4), characterized in that: one side of the second pipe (104) in the output structure (1) is connected to the first solenoid valve (105) by bolts, one side of the first solenoid valve (105) is connected to the third pipe (106) by bolts, one side of the third pipe (106) is connected to the fourth pipe (107) by bolts, one side of the fourth pipe (107) is connected to the water tank (2) by bolts, and one side of the second pipe (104) in the output structure (1) is connected to the heat pump structure ( 3), one side of the condenser (301) is connected to the fifth pipe (302) by bolts, one side of the fifth pipe (302) is connected to the compressor (303) by bolts, one side of the compressor (303) is connected to the sixth pipe (304) by bolts, one side of the sixth pipe (304) is connected to the evaporator (305) by bolts, one side of the evaporator (305) is connected to the tenth pipe (401) in the transmission structure (4) by bolts, and one side of the tenth pipe (401) is connected to the second water circulation pump (402) by bolts.

2. The joint control system for multiple heat pump units according to claim 1, characterized in that: One side of the first water circulation pump (101) in the output structure (1) is connected to the first pipe (102) by bolts, one side of the first pipe (102) is connected to the filter structure (103) by bolts, and one side of the filter structure (103) is connected to the second pipe (104) by bolts.

3. The multiple heat pump unit joint control system according to claim 2, characterized in that: One side of the second pipe (104) is connected to the first solenoid valve (105) by bolts, one side of the first solenoid valve (105) is connected to the third pipe (106) by bolts, one side of the third pipe (106) is connected to the fourth pipe (107) by bolts, and one side of the fourth pipe (107) is connected to the water tank (2) by bolts.

4. The multiple heat pump unit joint control system according to claim 1, characterized in that: One side of the condenser (301) in the heat pump structure (3) is connected to the fifth pipe (302) by bolts, one side of the fifth pipe (302) is connected to the compressor (303) by bolts, one side of the compressor (303) is connected to the sixth pipe (304) by bolts, one side of the sixth pipe (304) is connected to the evaporator (305) by bolts, one side of the evaporator (305) is connected to the seventh pipe (3051) by bolts, and one side of the first solenoid valve (105) is connected to the first solenoid valve (105) by bolts.

5. The joint control system for multiple heat pump units according to claim 4, characterized in that: One side of the evaporator (305) is connected to the eighth pipe (306) by bolts, one side of the eighth pipe (306) is connected to the second solenoid valve (307) by bolts, and one side of the second solenoid valve (307) is connected to the condenser (301) by bolts.

6. The multiple heat pump unit joint control system according to claim 5, characterized in that: One side of the condenser (301) is connected to the ninth pipe (308) by bolts, the outer side of the ninth pipe (308) is connected to the third solenoid valve (309) by bolts, and one side of the ninth pipe (308) is connected to the fourth pipe (107) by bolts.

7. The joint control system for multiple heat pump units according to claim 1, characterized in that: One side of the tenth pipe (401) in the transmission structure (4) is connected to the second water circulation pump (402) by bolts, one side of the second water circulation pump (402) is connected to the eleventh pipe (403) by bolts, the outer side of the eleventh pipe (403) is connected to the fourth solenoid valve (404) by bolts, and one side of the eleventh pipe (403) is connected to the water tank (2) by bolts.