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    • 4. 发明申请
    • EJECTOR-ENHANCED HEAT RECOVERY REFRIGERATION SYSTEM
    • 喷射增强型热回收制冷系统
    • WO2017192302A1
    • 2017-11-09
    • PCT/US2017/029326
    • 2017-04-25
    • CARRIER CORPORATION
    • ELSHERBINI, Abdelrahman I.VERMA, ParmeshCOGSWELL, Frederick J.
    • F25B7/00F25B1/06F25B6/04F25B40/02F25B27/02
    • A refrigerated transport system (20) comprises: an engine (30). A vapor compression system (50) comprises: a compressor (40) for compressing a flow of a refrigerant; a first heat exchanger (60) along a refrigerant flowpath (52) of the refrigerant; and a second heat exchanger (66) along the refrigerant flowpath of the refrigerant. A heat recovery system (56) has: a first heat exchanger (110) for transferring heat from the engine to a heat recovery fluid along a heat recovery flowpath (58); and a second heat exchanger (112; 63) along the heat recovery flowpath. The heat recovery system second heat exchanger and the vapor compression system first heat exchanger are respective portions of a shared tube/fin package.
    • 冷藏运输系统(20)包括:发动机(30)。 蒸汽压缩系统(50)包括:压缩机(40),用于压缩制冷剂的流量; 沿制冷剂的制冷剂流路(52)的第一热交换器(60) 和沿着制冷剂的制冷剂流动路径的第二热交换器(66)。 热回收系统(56)具有:第一热交换器(110),用于沿着热回收流动路径(58)将热量从发动机传递到热回收流体; 和沿着热回收流动路径的第二热交换器(112; 63)。 热回收系统第二热交换器和蒸气压缩系统第一热交换器是共享管/鳍片封装的相应部分。
    • 6. 发明申请
    • EJECTOR HEAT PUMP
    • 喷枪热泵
    • WO2017007585A1
    • 2017-01-12
    • PCT/US2016/037822
    • 2016-06-16
    • CARRIER CORPORATION
    • LIU, HongshengVERMA, ParmeshRADCLIFF, Thomas D.
    • F25B41/00F25B13/00
    • F25B13/00F04F5/46F25B9/002F25B9/08F25B41/00F25B41/04F25B2341/0012F25B2341/0015F25B2400/0407F25B2400/23
    • A vapor compression system (200; 400; 600; 700; 800; 900; 1000) comprises a plurality of valves (260, 262, 264; 260) controllable to define a first mode flowpath and a second mode flowpath. The first mode flowpath is sequentially through: a compressor (22); a first heat exchanger (30); a first nozzle (228; 624); and a separator (48), and then branching into: a first branch returning to the compressor; and a second branch passing through an expansion device (70) and a second heat exchanger (64) to the rejoin the flowpath between the first heat exchanger and the separator. The second mode flowpath is sequentially through: the compressor; the second heat exchanger; a second nozzle (248; 625); and the separator, and then branching into: a first branch returning to the compressor; and a second branch passing through the expansion device and first heat exchanger to the rejoin the flowpath between the first heat exchanger and the separator.
    • 蒸汽压缩系统(200; 400; 600; 700; 800; 900; 1000)包括多个可控制以限定第一模式流动路径和第二模式流动路径的阀门(260,262,264; 260)。 第一模式流路顺序地通过:压缩机(22); 第一热交换器(30); 第一喷嘴(228; 624); 和分离器(48),然后分支成:返回到压缩机的第一分支; 以及通过膨胀装置(70)和第二热交换器(64)的第二分支,以重新连接第一热交换器和分离器之间的流路。 第二模式流路顺序地通过:压缩机; 第二换热器; 第二喷嘴(248; 625); 分离器,然后分支成:返回到压缩机的第一分支; 以及第二分支,其通过所述膨胀装置和所述第一热交换器重新接合所述第一热交换器和所述分离器之间的流路。
    • 10. 发明申请
    • HIGH EFFICIENCY EJECTOR CYCLE
    • 高效率的喷射器循环
    • WO2012012488A1
    • 2012-01-26
    • PCT/US2011/044614
    • 2011-07-20
    • CARRIER CORPORATIONWANG, JinliangVERMA, Parmesh
    • WANG, JinliangVERMA, Parmesh
    • F25B41/00
    • F25B1/06F25B41/00F25B43/006F25B2309/061F25B2341/0011F25B2341/0013F25B2341/0015
    • A system has a compressor (22), a heat rejection heat exchanger (30), first and second ejectors (38, 202), first and second heat absorption heat exchangers (64, 220), and first and second separators (118, 210). The heat rejection heat exchanger is coupled to the compressor to receive refrigerant compressed by the compressor. The first ejector has a primary inlet coupled to the heat rejection exchanger to receive refrigerant, a secondary inlet, and an outlet. The first separator has an inlet coupled to the outlet of the first ejector to receive refrigerant from the first ejector. The first separator has a gas outlet coupled to the compressor to return refrigerant to the compressor. The first separator has a liquid outlet coupled to the secondary inlet of the ejector to deliver refrigerant to the first ejector. The first heat absorption heat exchanger is coupled to the liquid outlet of the first separator to receive refrigerant and to the secondary inlet of the first ejector to deliver refrigerant to the first ejector. The second ejector has a primary inlet coupled to the liquid outlet of the first separator to receive refrigerant, a secondary inlet, and an outlet. The second separator has an inlet coupled to an outlet of the second ejector to receive refrigerant from the second ejector, a gas outlet coupled to the compressor to return refrigerant to the compressor, and a liquid outlet. The second heat absorption heat exchanger is coupled to the liquid outlet of the second separator to receive refrigerant and to the secondary inlet of the second ejector to deliver refrigerant to the second ejector.
    • 一种系统具有压缩机(22),排热换热器(30),第一和第二喷射器(38,202),第一和第二吸热热交换器(64,220),以及第一和第二分离器 )。 排热热交换器与压缩机相连以接收由压缩机压缩的制冷剂。 第一喷射器具有联接到排热换热器以接收制冷剂,次级入口和出口的主入口。 第一分离器具有联接到第一喷射器的出口的入口以从第一喷射器接收制冷剂。 第一分离器具有联接到压缩机的气体出口,以将制冷剂返回到压缩机。 第一分离器具有联接到喷射器的次级入口的液体出口,以将制冷剂输送到第一喷射器。 第一吸热式热交换器被耦合到第一分离器的液体出口以接收制冷剂和第一喷射器的次级入口以将制冷剂输送到第一喷射器。 第二喷射器具有联接到第一分离器的液体出口的主入口以接收制冷剂,次级入口和出口。 第二分离器具有联接到第二喷射器的出口的入口,以从第二喷射器接收制冷剂,连接到压缩机以将制冷剂返回到压缩机的气体出口和液体出口。 第二吸热式热交换器耦合到第二分离器的液体出口以接收制冷剂并且连接到第二喷射器的次级入口以将制冷剂输送到第二喷射器。