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    • 5. 发明授权
    • Portable liquid desiccant dehumidifier
    • 便携式液体干燥剂除湿机
    • US6138470A
    • 2000-10-31
    • US984741
    • 1997-12-04
    • Shailesh V. PotnisSrikant Ram RaoRobert L. Laurent, Jr.
    • Shailesh V. PotnisSrikant Ram RaoRobert L. Laurent, Jr.
    • B01D53/26F24F3/14F24F5/00F28B1/02F28D7/10F28F1/08F25D23/00E21B27/00F25D17/06G21B43/00
    • F24F3/1417B01D53/263F24F3/1411F24F5/0014F28B1/02F28D7/106F28F1/08F24F2003/144
    • A liquid desiccant dehumidifier includes a liquid desiccant absorber arranged to receive concentrated liquid desiccant and absorb moisture contained in ambient air passed through the absorber thereby diluting the liquid desiccant. A first heat exchanger is operative to heat dilute liquid desiccant received from the desiccant absorber prior to passage to a boiler that evaporates moisture from the diluted liquid desiccant to create steam and reconstitute the desiccant into a concentrated liquid desiccant. Dilute liquid desiccant from the first heat exchanger first passes to a condenser that receives steam from the boiler and sensibly heats the dilute liquid desiccant to a higher second temperature without direct exposure to steam or air. A second heat exchanger communicates with the condenser, the boiler and the first heat exchanger and is operative to further heat diluted liquid desiccant received from the condenser to a higher third temperature prior to entry into the boiler by recovering waste heat from the boiler. A pump draws concentrated liquid desiccant from the boiler through the heat exchangers and passes it to the absorber.
    • 液体干燥剂除湿器包括布置成接收浓缩液体干燥剂并吸收通过吸收器的环境空气中含有的水分的液体干燥剂吸收剂,从而稀释液体干燥剂。 第一热交换器用于在通过到蒸发来自稀释的液体干燥剂的水分的锅炉之前加热从干燥剂吸收器收到的稀释的液体干燥剂以产生蒸汽并将干燥剂重新构成浓缩的液体干燥剂。 首先将来自第一热交换器的稀释液体干燥剂送入冷凝器,该冷凝器从锅炉接收蒸汽并将稀液体干燥剂显着地加热到更高的第二温度,而不直接暴露于蒸汽或空气。 第二热交换器与冷凝器,锅炉和第一热交换器连通,并且可操作以通过从锅炉回收废热,将从冷凝器接收的稀释的液体干燥剂进一步加热到进入锅炉之前的较高的第三温度。 泵将浓缩的液体干燥剂从锅炉中通过热交换器吸收,并将其传递到吸收器。
    • 6. 发明授权
    • Method and apparatus for supplying conditioned fresh air to an indoor
area
    • 将调节后的新鲜空气供给到室内的方法和装置
    • US5761915A
    • 1998-06-09
    • US816164
    • 1997-03-12
    • Srikant Ram Rao
    • Srikant Ram Rao
    • B01D46/10F24F3/14F24F3/147F25D17/06
    • F24F3/1423F24F2003/1464F24F2203/1004F24F2203/1012F24F2203/1032F24F2203/104F24F2203/106F24F2203/1068F24F2203/1084
    • A housing has a first side and a second side. A first opening is disposed in the first side. A second opening and a third opening are disposed in the second side. An enthalpy wheel has a first side facing surface and an opposite second side facing surface. The enthalpy wheel is rotatably mounted within the housing. Approximately half of the second side facing surface of the enthalpy wheel is in fluid communication with the second opening. Approximately the remaining half of the second side facing surface is in fluid communication with the third opening. Substantially the entire first side facing surface is in fluid communication with the first opening. A first fan is mounted within the housing adjacent to the second opening. A second fan is mounted within the housing adjacent to the third opening. A partition is disposed in the housing between a predetermined location on the second side of the housing between the second opening and the third opening and extends to the enthalpy wheel to define, in part, a first air flow path and a second air flow path within the housing. The first air flow path extends between the second opening through the enthalpy wheel to the first opening. The second air flow path extends between the first opening through the enthalpy wheel to the third opening. In a preferred embodiment, the ratio of air flow through the first air flow path to air flow through the second air flow path ranges from about 65% to about 85%.
    • 壳体具有第一侧和第二侧。 第一开口设置在第一侧。 第二开口和第三开口设置在第二侧。 焓轮具有第一面朝向表面和相对的第二侧面。 焓轮可旋转地安装在壳体内。 焓轮的第二面对面的大约一半与第二开口流体连通。 大约第二侧面的表面的剩余一半与第三开口流体连通。 基本上整个第一侧面的表面与第一开口流体连通。 第一风扇安装在邻近第二开口的壳体内。 第二风扇安装在邻近第三开口的壳体内。 一个分隔件设置在外壳之间位于第二开口和第三开口之间的外壳第二侧的预定位置之间,并延伸至焓轮,部分地限定第一空气流动路径和第二空气流动路径 住房。 第一气流路径在通过焓轮的第二开口到第一开口之间延伸。 第二空气流路在通过焓轮的第一开口到第三开口之间延伸。 在优选实施例中,通过第一空气流动路径的空气流与通过第二空气流动通道的气流的比率为约65%至约85%。