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Solution spraying type frostless air source heat pump device

An air-source heat pump and spray-type technology, which is applied in the field of refrigeration technology and air-source heat pump, can solve problems such as the inability to avoid frost for a long time, the deterioration of the heat transfer performance of the heat exchanger, and the shortening of the frost-free running time. The effect of controllable and adjustable volume, reducing condensation temperature, improving reliability and safety

Active Publication Date: 2014-07-23
TSINGHUA UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

This type of system better solves the problem of whether the frost-free air source heat pump can prevent frosting and the possible high energy consumption, but there are still the following deficiencies: ① Since the adsorbent material is sprayed on the surface of the air-cooled heat exchanger, its adsorbent The dosage is limited, which will undoubtedly shorten the frost-free running time, resulting in frequent regeneration process and affecting indoor comfort; ②Absorptive materials will lead to poor heat transfer performance of the heat exchanger, especially when operating in summer cooling mode, The adsorption material is even more detrimental to the heat exchanger;
[0004] The above-mentioned frost-free air source heat pump system still has high energy consumption due to unreasonable design, cannot avoid frosting for a long time, and due to the use of outdoor low-temperature air for regeneration, the working condition is unstable or even re-frosting, or the system is too complicated, resulting in expensive investment and operation And other issues

Method used

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  • Solution spraying type frostless air source heat pump device
  • Solution spraying type frostless air source heat pump device
  • Solution spraying type frostless air source heat pump device

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specific Embodiment 1

[0037] The solution spray type frost-free air source heat pump of the present invention has a heating mode, a regeneration mode and a cooling mode.

[0038] see figure 1 , in heating mode: No. 1 port 201 of the four-way valve is connected to No. 4 port 204, No. 2 port 202 is connected to No. 3 port 203, the first expansion valve 4 and the second expansion valve 502 normally throttle, the system Enter heating mode. The refrigerant is compressed into a high-temperature and high-pressure gas by the compressor 1, and enters the indoor heat exchanger 3 through the four-way valve 2 to condense into a high-pressure saturated liquid. The heat is evaporated and absorbed in the heater 501 , and after the secondary throttling by the second expansion valve 502 , it is completely evaporated and absorbed in the finned evaporator 503 to become superheated gas. Finally, the refrigerant returns to the compressor 1 through the four-way valve 2 to complete a heating cycle. The air first passe...

specific Embodiment 2

[0041] The following describes the specific flow and working principle of the present invention in the heating mode, regeneration mode and refrigeration mode when the technical solution of the air circulation system is adopted.

[0042] see Figure 4 , in heating mode: No. 1 port 201 of the four-way valve is connected to No. 4 port 204, No. 2 port 202 is connected to No. 3 port 203, the first expansion valve 4 and the second expansion valve 502 normally throttle, and the second expansion valve 4 The first air valve 509 and the second air valve 510 are opened, the circulation air valve 511 is closed, and the system enters the heating mode. The refrigerant is compressed into a high-temperature and high-pressure gas by the compressor 1, and enters the indoor heat exchanger 3 through the four-way valve 2 to condense into a high-pressure saturated liquid. The heat is evaporated and absorbed in the heater 501 , and after the secondary throttling by the second expansion valve 502 , ...

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Abstract

The invention belongs to the field of heat pump technologies and refrigeration air conditioners, and relates to a solution spraying type frostless air source heat pump device. The device comprises a compressor, a four-way valve, an indoor heat exchanger, a first expansion valve, an outdoor heat exchange unit and a control unit. A heat exchanger in the outdoor heat exchange unit comprises a spraying type heat exchanger body, a second expansion valve and a finned heat exchanger body, and outdoor air firstly passes through the spraying type heat exchanger body and then passes through the finned heat exchanger body. In the heating process, refrigerating fluid from the first expansion valve flows through the spraying type heat exchanger body, the second expansion valve and the finned heat exchanger body in sequence and flows to an air suction opening of the compressor. In the refrigeration process, the refrigerating fluid discharged out of the compressor flows through the finned heat exchanger body, the second expansion valve and the spraying type heat exchanger body in sequence and then flows to the first expansion valve. Through the adjustment of the opening states of the first expansion valve and the second expansion valve, the heat pump device has the advantages that the outdoor heat exchange unit operates without frost in the heating process, the heating performance is stable, the regeneration power consumption is low, and the refrigeration operating performance in summer is improved.

Description

technical field [0001] The invention belongs to the technical field of refrigeration technology and air source heat pump, and in particular relates to a frost-free air source heat pump system with spray dehumidification and regenerative heat recovery. Background technique [0002] Air source heat pumps have been widely promoted and applied in the middle and lower reaches of the Yangtze River, Southwest China and South China due to their advantages of both cooling and heating, compact structure, energy saving and water saving, and convenient installation. However, in areas with low temperature and high humidity in winter, air source heat pumps are prone to frost. Frosting will not only reduce the heat transfer area and increase the heat transfer resistance, but also increase the air flow resistance and reduce the air volume, resulting in insufficient heating capacity and increased heating energy consumption. Therefore, the development of air source heat pump technology that ...

Claims

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Application Information

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IPC IPC(8): F25B47/02F25B29/00F25B30/02
Inventor 石文星李宁宋鹏远李先庭王宝龙
Owner TSINGHUA UNIV
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