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Device for taking water from air based on heat pump cycle of moisture storage heat exchanger and moisture-heat exchanger
The invention relates to the technical field of air water taking and dehumidification, and provides an air water taking device based on heat pump circulation of a humidity storage heat exchanger and a humidity heat exchanger, which comprises a first humidity storage heat exchanger, a compressor, a second humidity storage heat exchanger, a liquid storage device, a heat regenerator, an evaporation condenser and a fan, the compressor is connected with the second humidity storage heat exchanger, the second humidity storage heat exchanger is connected with the liquid storage device, the liquid storage device is connected with the other end of the first humidity storage heat exchanger, the first humidity storage heat exchanger and the second humidity storage heat exchanger are respectively connected with the heat regenerator, and the heat regenerator is connected with the evaporation condenser which is connected with the second humidity storage heat exchanger. The fan is connected between the evaporation condenser and the second moisture storage heat exchanger and between the gas-gas regenerator and the first moisture storage heat exchanger. The device is convenient to operate, safe, reliable and low in processing cost and operation cost, the condensation temperature is increased, meanwhile, high energy efficiency and water vapor enrichment are guaranteed, and all-day operation of air water taking circulation is achieved.
本发明提供了一种涉及空气取水及除湿技术领域的基于储湿换热器热泵循环和湿热交换器的空气取水装置,包括第一储湿换热器、压缩机、第二储湿换热器、储液器、回热器、蒸发凝水器以及风机,第一储湿换热器一端连接压缩机,压缩机连接第二储湿换热器,第二储湿换热器连接储液器,储液器连接第一储湿换热器另一端,第一储湿换热器和第二储湿换热器分别连接回热器,回热器连接蒸发凝水器,蒸发凝水器连接第二储湿换热器,风机分别连接于蒸发凝水器与第二储湿换热器之间、气气回热器与第一储湿换热器之间。本发明操作方便、安全可靠,加工成本和运行成本都较低,提升冷凝温度的同时保证较高能效与水蒸气的富集,实现空气取水循环全天运行。
Device for taking water from air based on heat pump cycle of moisture storage heat exchanger and moisture-heat exchanger
The invention relates to the technical field of air water taking and dehumidification, and provides an air water taking device based on heat pump circulation of a humidity storage heat exchanger and a humidity heat exchanger, which comprises a first humidity storage heat exchanger, a compressor, a second humidity storage heat exchanger, a liquid storage device, a heat regenerator, an evaporation condenser and a fan, the compressor is connected with the second humidity storage heat exchanger, the second humidity storage heat exchanger is connected with the liquid storage device, the liquid storage device is connected with the other end of the first humidity storage heat exchanger, the first humidity storage heat exchanger and the second humidity storage heat exchanger are respectively connected with the heat regenerator, and the heat regenerator is connected with the evaporation condenser which is connected with the second humidity storage heat exchanger. The fan is connected between the evaporation condenser and the second moisture storage heat exchanger and between the gas-gas regenerator and the first moisture storage heat exchanger. The device is convenient to operate, safe, reliable and low in processing cost and operation cost, the condensation temperature is increased, meanwhile, high energy efficiency and water vapor enrichment are guaranteed, and all-day operation of air water taking circulation is achieved.
本发明提供了一种涉及空气取水及除湿技术领域的基于储湿换热器热泵循环和湿热交换器的空气取水装置,包括第一储湿换热器、压缩机、第二储湿换热器、储液器、回热器、蒸发凝水器以及风机,第一储湿换热器一端连接压缩机,压缩机连接第二储湿换热器,第二储湿换热器连接储液器,储液器连接第一储湿换热器另一端,第一储湿换热器和第二储湿换热器分别连接回热器,回热器连接蒸发凝水器,蒸发凝水器连接第二储湿换热器,风机分别连接于蒸发凝水器与第二储湿换热器之间、气气回热器与第一储湿换热器之间。本发明操作方便、安全可靠,加工成本和运行成本都较低,提升冷凝温度的同时保证较高能效与水蒸气的富集,实现空气取水循环全天运行。
Device for taking water from air based on heat pump cycle of moisture storage heat exchanger and moisture-heat exchanger
基于储湿换热器热泵循环和湿热交换器的空气取水装置
WANG RUZHU (Autor:in) / SHAO ZHAO (Autor:in) / DU SHUAI (Autor:in) / WANG HONGBIN (Autor:in) / GE TIANSHU (Autor:in)
07.06.2024
Patent
Elektronische Ressource
Chinesisch
HEAT EXCHANGER AND SANITARY WASHING DEVICE COMPRISING HEAT EXCHANGER
Europäisches Patentamt | 2022
|British Library Online Contents | 2010
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