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    • 4. 发明授权
    • Dehumidifying air-conditioning system and method of operating the same
    • 除湿空调系统及其运行方法
    • US06311511B1
    • 2001-11-06
    • US09529951
    • 2000-04-21
    • Kensaku Maeda
    • Kensaku Maeda
    • F25D2300
    • F24F3/1423F24F3/1411F24F5/001F24F2003/144F24F2203/1016F24F2203/1028F24F2203/1032F24F2203/104F24F2203/1056F24F2203/1072F24F2203/1084Y02B30/52
    • The quantity of heat for cooling processing air as a low temperature heat source for regenerating a desiccant to be dehumidified, by a sensible heat exchanger before reaching a low temperature heat source heat exchanger is suppressed for thereby maintaining a heat load on the low temperature heat source beat exchanger and making it possible to handle an air-conditioning load with a small sensible heat factor, A dehumidifying air-conditioning system has a path (A) for processing air to be cooled by a low temperature heat source (115) of a heat pump (200) after moisture is adsorbed therefrom by a desiccant (103), a path (B) for regenerating air which, after being heated by a high temperature heat source (120) of the heat pump, passes through the desiccant that has adsorbed moisture to regenerate the desiccant, and a path (C) for cooling air for cooling the processing air by exchanging heat with the processing air from which moisture is adsorbed by the desiccant, the arrangement being such that the processing air and the regenerating air alternately flow through the desiccant. The dehumidifying air-conditioning system has means (400) for adjusting the flow rate of the cooling air which passes through a heat exchanger (300) for cooling the processing air to variably exchange heat between the processing air and the cooling air.
    • 作为用于再生待除湿干燥剂的低温热源的冷却处理空气的热量在到达低温热源热交换器之前由显热交换器被抑制,由此保持对低温热源的热负荷 一个除湿空调系统具有用于处理由热量低温热源(115)冷却的空气的路径(A),其中, 通过干燥剂(103)吸收水分后的泵(200),用于再生空气的路径(B),其在被热泵的高温热源(120)加热后通过吸附的干燥剂 水分以再生干燥剂,以及用于冷却空气的路径(C),用于通过与由干燥剂吸收水分的处理空气交换热量来冷却处理空气,该装置成功 h处理空气和再生空气交替流过干燥剂。 除湿空调系统具有用于调节通过热交换器(300)的冷却空气的流量的装置(400),用于冷却处理空气以在处理空气和冷却空气之间可变地交换热量。
    • 5. 发明授权
    • Dehumidification apparatus
    • 除湿装置
    • US06301915B1
    • 2001-10-16
    • US09577568
    • 2000-05-25
    • Hidetoshi IkeYasushi IshikawaKazunari Kakuta
    • Hidetoshi IkeYasushi IshikawaKazunari Kakuta
    • F25D2300
    • F24F3/1417B01D53/261F24F2003/144
    • A dehumidification apparatus of the type using a deliquescent agent, with which the leakage of deliquesced liquid out of the apparatus is securely prevented is disclosed. In the dehumidification apparatus, an air inlet and an air outlet are formed in the upper plate of the container. At least one closing member which can close the air inlet and the air outlet is arranged above the air inlet and the air outlet. At least one movable member is provided, which has each distal end, which member can move in the vertical direction, which member is attached to the closing member, and which member is urged downwardly such that when the dehumidification apparatus is not placed with its bottom down, the distal end of the movable member protrudes from the bottom of the apparatus so that the closing member closes the air inlet and the air outlet, and when the dehumidification apparatus is placed on a plane with its bottom down, the distal end of the movable member is made flush with the bottom overcoming the downward urging force by virtue of weight of the apparatus so that the air inlet and the air outlet are open.
    • 公开了一种使用潮解剂的类型的除湿装置,其中可靠地防止潮气流出设备的泄漏。 在除湿装置中,在容器的上板上形成空气入口和空气出口。 至少一个关闭空气入口和空气出口的关闭构件设置在空气入口和空气出口的上方。 提供至少一个可移动部件,其具有每个远端,该部件可以在垂直方向上移动,该部件附接到关闭部件,并且该部件向下推动,使得当除湿装置未被放置在其底部 可动构件的远端从设备的底部突出,使得关闭构件关闭空气入口和空气出口,并且当除湿装置被放置在其底部向下的平面上时, 活动构件通过装置的重量与底部齐平并克服向下的推动力,使得进气口和空气出口打开。
    • 7. 发明授权
    • Insulated cabinet for installation in a home exterior wall
    • 绝缘柜安装在家庭外墙
    • US06484531B1
    • 2002-11-26
    • US09908031
    • 2001-07-18
    • John D. HambletonDavid M. Hunt, Sr.
    • John D. HambletonDavid M. Hunt, Sr.
    • F25D2300
    • A47G29/141A47G2029/147F25D23/02F25D23/10
    • The present invention provides a convenient means for delivery personnel to deliver refrigerated goods to a building without having to wait until the building owner is home. The invention provides a dual-access insulated cabinet installable into the exterior wall of a home, with outside and inside doors. Both outside and inside doors contain lockable mechanisms for securing the doors. The insulated cabinet includes a main compartment for storing items to be frozen, an interior compartment for inserting into the wall of a building, and a cooling apparatus connected to the main compartment for selectively cooling the insulated cabinet to a selected temperature. An optional indicator light is inside whereby the light turns on when a delivery of refrigerated goods is made through the outside door of the invention. The indicator light then resets to the off state when the resident of the building opens the inside door of the present invention.
    • 本发明提供了一种方便的方式,用于运送人员将冷藏物品运送到建筑物,而不必等到建筑物所有人在家之前。 本发明提供一种可以安装在家庭外墙上的双通道绝缘柜,外部和内部。 外门和内门都包含用于固定门的可锁定机构。 绝热柜包括用于储存要冷冻的物品的主隔室,用于插入建筑物的墙壁的内部隔室,以及连接到主室的冷却装置,用于将绝热柜选择性地冷却到所选择的温度。 在内部可选的指示灯,当通过本发明的外门制造冷藏货物的输送时,灯会亮起。 当建筑物的居民打开本发明的内部门时,指示灯然后复位到关闭状态。
    • 9. 发明授权
    • Dehumidifying air conditioner
    • 除湿空调
    • US06318106B1
    • 2001-11-20
    • US09529035
    • 2000-04-06
    • Kensaku Maeda
    • Kensaku Maeda
    • F25D2300
    • F24F3/1423F24F5/0014F24F2203/1004F24F2203/1016F24F2203/1028F24F2203/1036F24F2203/104F24F2203/1052F24F2203/1068F24F2203/1072F24F2203/108F24F2203/1084
    • A dehumidifying air-conditioning apparatus has a compact arrangement including an integral combination of a heat pump as a heat source drivable by a thermal energy from an external source and a desiccant air-conditioning unit, and can achieve a high energy efficiency. The dehumidifying air-conditioning apparatus through which processing air and regenerating air flows alternately through a first desiccant 103 has an adsorption heat pump having first and second heat exchanger assemblies 10A, 10B of closed structure each having desiccant heat exchangers 1A, 1B with a second desiccant for adsorbing or desorbing a refrigerant and refrigerant heat exchangers 3A, 3B for evaporating or condensing the refrigerant. The refrigerant heat exchangers of the first and second heat exchanger assemblies communicate with each other via a path through a restriction 7. The processing air and the regenerating air flow alternately through the refrigerant heat exchangers of the first and second heat exchanger assemblies of the adsorption heat pumps, and a heating medium for driving the adsorption heat pumps is guided to and heated by the desiccant heat exchangers directly in communication with the refrigerant heat exchangers through which the regenerating air flows.
    • 除湿空调装置具有紧凑的布置,其包括作为可由来自外部源的热能驱动的热源的热泵和干燥剂空调单元的整体组合,并且可以实现高能量效率。 处理空气和再生空气通过第一干燥剂103交替流动的除湿空气调节装置具有吸附热泵,该吸附热泵具有闭合结构的第一和第二热交换器组件10A,10B,每个具有干燥剂热交换器1A,1B,其具有第二干燥剂 用于吸附或解吸用于蒸发或冷凝制冷剂的制冷剂和制冷剂热交换器3A,3B。 第一和第二热交换器组件的制冷剂热交换器经由限制器7的路径相互连通。处理空气和再生空气流交替地通过第一和第二热交换器组件的吸附热量的制冷剂热交换器 泵和用于驱动吸附热泵的加热介质被直接与再生空气流过的制冷剂热交换器连通的干燥剂热交换器引导并加热。
    • 10. 发明授权
    • Liquid desiccant air conditioner
    • 液体干燥剂空调
    • US06216483B1
    • 2001-04-17
    • US09131287
    • 1998-08-07
    • Shailesh V. PotnisKevin GurleyPhillip T. McKittrickRobert BaumannSrikant Ram RaoRobert L. Laurent, Jr.
    • Shailesh V. PotnisKevin GurleyPhillip T. McKittrickRobert BaumannSrikant Ram RaoRobert L. Laurent, Jr.
    • F25D2300
    • F24F3/1417B01D53/263F24F3/1411F24F5/0014F24F2003/144F28B1/02F28D7/106F28F1/08
    • A liquid desiccant air conditioner includes an absorption air conditioner and a liquid desiccant dehumidifier. The dehumidifier includes a liquid desiccant absorber for absorbing moisture contained in ambient air entering the dehumidifier, a boiler for boiling dilute liquid desiccant from the absorber to evaporate moisture and reconstitute the dilute liquid desiccant into concentrated liquid desiccant. A first heat exchanger receives dilute liquid desiccant from the absorber and is operative to heat the dilute liquid desiccant prior to passage to a condenser that receives steam from the boiler and sensibly heats the dilute liquid desiccant therein without direct contact with air, thereby eliminating desiccant carryover from the condenser. A second heat exchanger is operable to transfer heat from concentrated liquid desiccant received from the boiler to preheated dilute liquid desiccant received from the condenser prior to entry into the boiler. The second heat exchanger also recovers waste heat from the boiler. A pump draws concentrated liquid desiccant through the heat exchangers into the absorber. A portion of the steam from the boiler is used to regenerate refrigerant in the absorption air conditioner.
    • 液体干燥剂空调器包括吸收空调和液体干燥剂除湿器。 除湿器包括用于吸收进入除湿器的环境空气中包含的水分的液体干燥剂吸收器,用于从吸收器中蒸发稀释液体干燥剂以蒸发水分并将稀液体干燥剂重新构成浓缩液体干燥剂的锅炉。 第一热交换器从吸收器接收稀液体干燥剂,并且在通过冷凝器之前加热稀液体干燥剂,冷凝器接收来自锅炉的蒸汽并明显地加热其中的稀液体干燥剂而不与空气直接接触,由此消除干燥剂携带 从冷凝器。 第二热交换器可操作以将来自从锅炉的浓缩液体干燥剂的热量传递到在进入锅炉之前从冷凝器接收的预热的稀液体干燥剂。 第二个热交换器还回收了来自锅炉的废热。 泵将浓缩液体干燥剂通过热交换器吸入吸收器。 来自锅炉的蒸汽的一部分用于再生吸收空调中的制冷剂。