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    • 31. 发明申请
    • METHOD AND ARRANGEMENT FOR PRODUCING COOLING POWER
    • 生产冷却功率的方法和装置
    • WO1997014919A1
    • 1997-04-24
    • PCT/FI1996000546
    • 1996-10-16
    • ABB INSTALLAATIOT OYLESKINEN, Seppo
    • ABB INSTALLAATIOT OY
    • F24D11/02
    • F25B29/006F24F5/00F24F2203/026
    • The invention relates to a method and an arrangement for producing cooling power for one or more buildings and for distributing the power to the buildings by means of liquid circulating in a pipe system, the cooling power being produced by an absorption aggregate (5, 8, 9, 10) or some other aggregate that produces heat to be condensed, and the cooling power being transferred to the supply air of the buildings by an air-conditioning unit or the like. To lower the investment costs, at least part of the return water coming from the air-conditioning unit or the like is arranged to be conducted to the absorption aggregate (5, 8, 9, 10) or some other aggregate that produces heat to be condensed, where it absorbs the condensation heat generated in the aggregate.
    • 本发明涉及一种用于生产一个或多个建筑物的冷却功率的方法和装置,并且通过在管道系统中循环的液体将功率分配给建筑物,该冷却功率由吸收骨料(5,8, 9,10)或产生热量被冷凝的一些其他聚集体,并且冷却功率通过空调单元等传送到建筑物的供应空气。 为了降低投资成本,来自空调单元等的至少一部分返回水被布置成被传导到吸收骨料(5,8,9,10)或一些其它产生热量的骨料 在其中吸收聚集体中产生的冷凝热。
    • 33. 发明申请
    • METHODS AND APPARATUSES FOR PROVIDING COOL THERMAL STORAGE AND/OR WATER PURIFICATION
    • 用于提供冷藏热存储和/或水净化的方法和装置
    • WO1991017392A1
    • 1991-11-14
    • PCT/US1991002964
    • 1991-04-29
    • CHENG, Chen-Yen
    • F23J03/00
    • C09K5/06F24F5/0017F25B17/00F25B29/006Y02B10/40Y02E60/147
    • The invention provides systems for cool thermal storage and purification of dilute solutions. Three working mediums are used: (a) a primary cool storage medium undergoes solidification and liquefaction operations, (b) a final heat interaction medium is used to provide air conditioning and (c) an intermediate heat interaction medium undergoes vaporization and condensation operations to enhance heat interactions. During charging, the intermediate medium is vaporized to remove heat from the primary medium to produce a first vapor of the intermediate medium and solidify the primary medium, and the first vapor is condensed by removing heat from it. During discharging, a mass of the intermediate medium is vaporized to remove heat from a mass of the final medium, to produce a mass of second vapor and a mass of chilled final medium, and the second vapor is condensed to liquefy the primary medium solid.
    • 本发明提供用于冷却储存和稀释溶液的纯化系统。 使用三种工作介质:(a)初级冷存储介质经历凝固和液化操作,(b)最终的热相互作用介质用于提供空调,和(c)中间热相互作用介质进行蒸发和冷凝操作以增强 热相互作用。 在充电期间,中间介质被蒸发以从主介质中除去热量,以产生中间介质的第一蒸气并使主介质固化,并且通过从其中除去热量使第一蒸气冷凝。 在排放期间,将一定质量的中间介质蒸发以从最终介质的质量中除去热量,以产生大量的第二蒸气和一批冷却的最终介质,并且将第二蒸气冷凝以液化主介质固体。
    • 36. 发明申请
    • SOLUTION HEAT PUMP APPARATUS AND METHOD
    • 解决方案热泵设备和方法
    • WO1986002714A1
    • 1986-05-09
    • PCT/US1985002160
    • 1985-10-31
    • ADOLPH COORS COMPANY
    • ADOLPH COORS COMPANYLANE, Michael, L.WHITNEY, Lowell, T.BECK, Charles, Paul
    • F25B07/00
    • B01D3/007F22B3/00F25B27/02F25B29/006Y02A30/274Y02B30/52
    • Solution heat pump systems, improvements in the heat exchangers thereof, methods for utilizing waste heat and for improving the efficiency of heat exchange are provided, to up-grade waste heat by temperature boosting. Waste heat is fed to the evaporization zone of a first heat exchanger (2) of an absorption heat pump apparatus to vaporize a first fluid (3) of a binary fluid, the vaporized first fluid (3) is then absorbed by the binary fluid in the absorber zone (5) releasing heat. A second heat exchanger (40) in the absorber zone (5) accepts the released heat from the binary fluid, thereby upgrading the temperature of the fluid to produce steam in the heat exchanger (40). After the release of heat from the binary fluid, the first fluid of the binary fluid is vaporized by use of waste heat and the vapor is condensed (35). The condensate is transferred to the first heat exchanger (2) for revaporation and the desorbed binary fluid is transferred to the absorber for further absorption of fluid. Improved heat exchanging contact between a source of waste heat and a binary working solution is obtained by providing a uniform film of binary working solution on the outside surfaces of a vertical tube heat exchanger.
    • 提供了解决方案的热泵系统,其热交换器的改进,废热的利用方法和提高热交换效率的方法,通过升温来提高废热。 废热被送入吸收式热泵装置的第一热交换器(2)的蒸发区,以蒸发二元流体的第一流体(3),然后汽化的第一流体(3)被二元流体吸收 吸收区(5)释放热量。 吸收器区域(5)中的第二热交换器(40)接受来自二元流体的释放的热量,由此在热交换器(40)中升高流体的温度以产生蒸汽。 在从二元流体释放热量之后,二元流体的第一流体通过使用废热而蒸发,蒸汽冷凝(35)。 冷凝物被转移到第一热交换器(2)以进行蒸发,并将解吸的二元流体转移到吸收器中以进一步吸收流体。 通过在垂直管式热交换器的外表面上提供均匀的二元加工溶液膜,可以获得废热源与二元工作溶液之间的热交换接触。
    • 37. 发明申请
    • DESICCANT AIR CONDITIONING METHODS AND SYSTEMS
    • 空气调节方法和系统
    • WO2014134473A1
    • 2014-09-04
    • PCT/US2014/019470
    • 2014-02-28
    • 7AC TECHNOLOGIES, INC.
    • VANDERMEULEN, Peter, F.LAFLAMME, ArthurALLEN, MarkDOODY, RobertPITCHER, David
    • F24F3/14F24F11/02F25B1/00
    • F25B29/006F24F3/1417F24F2003/1435F24F2003/1458F24F2203/021F25B25/005F25B2339/047
    • A desiccant air conditioning system for treating an air stream entering a building space, including a conditioner configured to expose the air stream to a liquid desiccant such that the liquid desiccant dehumidifies the air stream in the warm weather operation mode and humidifies the air stream in the cold weather operation mode. The conditioner includes multiple plate structures arranged in a vertical orientation and spaced apart to permit the air stream to flow between the plate structures. Each plate structure includes a passage through which a heat transfer fluid can flow. Each plate structure also has at least one surface across which the liquid desiccant can flow. The system includes a regenerator connected to the conditioner for causing the liquid desiccant to desorb water in the warm weather operation mode and to absorb water in the cold weather operation mode from a return air stream.
    • 一种用于处理进入建筑空间的空气流的干燥剂空调系统,包括配置成将空气流暴露于液体干燥剂的调理器,使得液体干燥剂在温暖的天气运行模式中对空气流进行除湿并且加湿 寒冷的天气运行模式。 调节器包括以垂直取向布置并间隔开的多个板结构,以允许空气流在板结构之间流动。 每个板结构包括传热流体可以通过的通道。 每个板结构还具有液体干燥剂可以流过的至少一个表面。 该系统包括连接到调节器的再生器,用于使得液体干燥剂在温暖的天气运行模式下解吸水并且在冷气候运行模式中从回气流吸收水。