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    • 52. 发明申请
    • Humidity control device
    • 湿度控制装置
    • US20060196195A1
    • 2006-09-07
    • US10547939
    • 2004-03-09
    • Shuji IkegamiTomohiro Yabu
    • Shuji IkegamiTomohiro Yabu
    • F25D17/06F25D23/00F25B25/00
    • F24F1/022B01D53/261F24F3/1411F24F3/1429F24F2003/144
    • Provided is a refrigerant circuit (1) which includes a first heat exchanger (3) and a second heat exchanger (5). The refrigerant circuit (1), through which a refrigerant circulates, performs a vapor compression refrigeration cycle. An adsorbent material is supported on a surface of the first heat exchanger (3) as well as on a surface of the second heat exchanger (5). The circulation of refrigerant in the refrigerant circuit (1) and the distribution of air are switched so that moisture present in a stream of air flowing through the refrigerant evaporating heat exchanger (3, 5) is adsorbed by the adsorbent material of the heat exchanger (3, 5) and the stream of air thus converted into a stream of dehumidified air is supplied indoors while, on the other hand, moisture desorbed from the adsorbent material of the refrigerant condensing heat exchanger (5, 3) is released to a stream of air flowing through the heat exchanger (5, 3) whereby the adsorbent material of the heat exchanger (5, 3) is regenerated. In addition, the circulation of refrigerant in the refrigerant circuit (1) and the distribution of air are switched so that moisture present in a stream of air flowing through the refrigerant evaporating heat exchanger (3, 5) is adsorbed by the adsorbent material of the heat exchanger (3, 5) while, on the other hand, moisture desorbed from the adsorbent material of the refrigerant condensing heat exchanger (5, 3) is released to a stream of air flowing through the heat exchanger (5, 3) whereby the adsorbent material of the heat exchanger (5, 3) is regenerated, and the stream of air thus converted into a stream of humidified air is supplied indoors.
    • 设置有包括第一热交换器(3)和第二热交换器(5)的制冷剂回路(1)。 制冷剂循环的制冷剂回路(1)进行蒸气压缩制冷循环。 在第一热交换器(3)的表面以及第二热交换器(5)的表面上也支撑吸附材料。 切换制冷剂回路(1)中的制冷剂的循环和空气分配,使流过制冷剂蒸发热交换器(3,5)的空气流中的水分被热交换器的吸附材料 3,5),并且将由此转化为除湿空气流的空气流供应到室内,而另一方面,从制冷剂冷凝热交换器(5,3)的吸附剂材料解吸的水分被释放到 空气流过热交换器(5,3),由此再生热交换器(5,3)的吸附剂材料。 此外,制冷剂回路(1)中的制冷剂的循环和空气的分配被切换,使得流过制冷剂蒸发热交换器(3,5)的空气流中存在的水分被吸附材料 另一方面,从制冷剂冷凝热交换器(5,3)的吸附剂材料解吸的水分被释放到流过热交换器(5,3)的空气流中,由此热交换器(3,5) 再生热交换器(5,3)的吸附剂材料,并将这样转化为加湿空气流的空气流供应到室内。