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    • 3. 发明公开
    • HUMIDITY CONTROL DEVICE
    • DEVICE湿度控制
    • EP1624256A4
    • 2008-04-23
    • EP04718742
    • 2004-03-09
    • DAIKIN IND LTD
    • IKEGAMI SHUJISUEOKA TAKAHISAYABU TOMOHIRO
    • B01D53/26F24F3/14F24F3/147F25B13/00
    • F24F3/1411B01D53/261F24F1/022F24F3/1429F24F3/147F25B13/00
    • A humidity control device, comprising a first heat exchanging chamber (69) in which a first heat exchanger (3) carrying adsorbent on the surface thereof is stored and a second heat exchanging chamber (73) formed adjacent to the first heat exchanging chamber (69) and in which a second heat exchanger (5) carrying adsorbent on the surface thereof is stored. A first inflow passage (63) and a first outflow passage (65) for air formed along one end face thereof where one face of the first heat exchanging chamber (69) is continued with one face of the second heat exchanging chamber (73) are disposed overlappingly with each other in the thickness direction. A first inflow passage (57) and a second outflow passage (59) for air formed along the surface thereof opposed to the one end face are disposed at the end face where one face of the first exchanging chamber (69) is continued with one face of the second heat exchanging chamber (73) overlappingly with each other in the thickness direction. The device also comprises dampers (35, ..., 47, ...) opening and closing openings (31a, ..., 33a, ...) communicating the first heat exchanging chamber (69) and second heat exchanging chamber (73) with the inflow passages (57, 63) and outflow passages (59, 65).
    • 5. 发明公开
    • ADSORPTION HEAT EXCHANGER
    • ADSORPTIONSWÄRMETAUSCHER
    • EP1748259A4
    • 2009-08-05
    • EP05734723
    • 2005-04-25
    • DAIKIN IND LTD
    • YABU TOMOHIROIKEGAMI SHUJI
    • F24F3/14B01D53/26F25B39/00F28D1/04F28D1/047F28F1/32F28F13/18
    • F24F3/1411B01D53/261F24F3/1429F25B39/00F28D1/0477F28F1/32F28F13/187
    • An adsorption heat exchanger (20) is composed of a fin-and-tube heat exchanger. In the absorption heat exchanger (20), a first tube row (41), a second tube row (42) and a third tube row (43) are formed in this order from the upstream side to the downstream side of an air flow. In the adsorption heat exchanger (20), a first row part (21) including the first tube row (41), a second row part (22) including the second tube row (42) and a third row part (23) including the third tube row (43) are formed. In the adsorption heat exchanger (20), a first adsorbing layer (36) is formed on a fin (30) of the first row part (21), a second adsorbing layer (37) is formed on the fin (30) of the second row part (22), and a third adsorbing layer (38) is formed on the fin (30) of the third row part (23). The quantities of adsorbent included in the adsorbing layers increase in the order of the first adsorbing layer (36), the second adsorbing layer (37) and the third adsorbing layer (38).
    • 吸附热交换器(20)由翅片管式热交换器构成。 在吸收热交换器20中,从气流的上游侧到下游侧依次形成第一管列41,第二管列42和第三管列43。 在吸附热交换器20中,具有包含第一管列41的第一列部21,包含第二列列42的第二列部22和包含第二列列部23的第三列部23, 第三管排(43)。 在吸附热交换器20中,在第一列部件21的翅片30上形成第一吸附层36,在第一列部件21的翅片30上形成第二吸附层37, 第二排部件(22)和第三吸附层(38)形成在第三排部件(23)的翅片(30)上。 包含在吸附层中的吸附剂的量以第一吸附层(36),第二吸附层(37)和第三吸附层(38)的顺序增加。
    • 7. 发明公开
    • HUMIDITY CONTROL DEVICE
    • FEUCHTIGKEITSREGELVORRICHTUNG
    • EP1621822A4
    • 2008-04-23
    • EP04718764
    • 2004-03-09
    • DAIKIN IND LTDIKEGAMI SHUJI
    • IKEGAMI SHUJIYABU TOMOHIRO
    • B01D53/26F24F3/14F24F3/147
    • F24F1/022B01D53/261F24F3/1411F24F3/1429F24F2003/144
    • A humidity control device, comprising a first heat exchanger (3) and a second heat exchanger (5), and a refrigerating circuit (1) in which refrigerant is circulated to perform a vapor compression refrigerating cycle, wherein adsorbent is carried on the surfaces of the first heat exchanger (3) and the second heat exchanger (5), the moisture of air flowing through the heat exchangers (3) and (5) in which the refrigerant evaporates is adsorbed by the adsorbent, the moisture is discharged into the air flowing through the heat exchangers (5) and (3) in which the refrigerant condenses to regenerate the adsorbent, and refrigerant circulation and air circulation in the refrigerant circuit (1) is switched to supply the air dehumidified by the adsorbent into a room. Also, the moisture of the air flowing through the heat exchangers (3) and (5) in which the refrigerant evaporates is adsorbed by the adsorbent, the moisture is discharged into the air flowing through the heat exchangers (5) and (3) in which the refrigerant condenses to regenerate the adsorbent, and the refrigerant circulation and air circulation in the refrigerant circuit (1) are switched to supply the air humidified by the adsorbent into the room.
    • 1。一种湿度调节装置,其特征在于,具备:第一热交换器(3)和第二热交换器(5);以及制冷剂循环回路,进行蒸气压缩式制冷循环的制冷回路(1),其特征在于, 第一热交换器(3)和第二热交换器(5)中,流过制冷剂蒸发的热交换器(3)和(5)的空气的湿气被吸附剂吸附,水分被排放到空气中 流过制冷剂冷凝的热交换器(5)和(3)以再生吸附剂,切换制冷剂回路(1)中的制冷剂循环和空气循环,以将由吸附剂除湿的空气供应到室内。 另外,流过制冷剂蒸发的热交换器(3)和(5)的空气的水分被吸附剂吸附,水分被排放到流过热交换器(5)和(3)的空气中 制冷剂冷凝以再生吸附剂,并切换制冷剂回路(1)中的制冷剂循环和空气循环,以将由吸附剂加湿的空气供应到室内。
    • 9. 发明公开
    • HUMIDITY CONTROLLER
    • FEUCHTIGKEITSREGLER
    • EP1630482A4
    • 2008-05-28
    • EP04734628
    • 2004-05-24
    • DAIKIN IND LTD
    • IKEGAMI SHUJIYABU TOMOHIRO
    • F24F3/14B01D53/26F24F3/147F24F11/02
    • B01D53/265F24F3/1411F24F3/1429F24F2011/0002
    • A humidity controller (10), wherein an adsorbent is supported on the surfaces of first and second heat exchangers (61, 62) in a refrigerant circuit, the refrigerant circuit is so formed that the circulating direction of refrigerant can be switched by operating a four-way selector valve. Also, in the humidity controller (10), a switching mechanism (50) switches an air flow passage. By operating the four-way selector valve and the switching mechanism (50), the humidity controller (10) dehumidifies first air by the heat exchangers (61, 62) switched to evaporators, and humidifies second air by the heat exchangers (61, 62) switched to condensers. In the humidity controller (10), the operation of the refrigerant circuit and the interval of air flow passage switching time are set according to a humidity controlling load. The interval of the switching time is set shorter as the humidity controlling load is larger.
    • 1.一种湿度调节装置,其特征在于,在制冷剂回路的第一热交换器和第二热交换器的表面支承有吸附剂,所述制冷剂回路形成为能够通过使四个 选择阀。 另外,在湿度调节装置10中,切换机构50切换空气流路。 通过操作四通切换阀和切换机构50,湿度控制器10通过切换为蒸发器的热交换器61,62对第一空气进行除湿,并利用热交换器61,62对第二空气进行加湿 )切换到冷凝器。 在湿度调节器10中,制冷剂回路的动作和风路切换时间的间隔根据湿度调节负载来设定。 湿度控制负荷越大,切换时间的间隔越短。