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    • 43. 发明申请
    • Minichannel heat exchanger with restrictive inserts
    • 具有限制插入件的小通道换热器
    • US20060102332A1
    • 2006-05-18
    • US10987972
    • 2004-11-12
    • Michael TarasAllen KirkwoodRobert ChopkoMikhail GorbounovIgor VaismanParmesh Verma
    • Michael TarasAllen KirkwoodRobert ChopkoMikhail GorbounovIgor VaismanParmesh Verma
    • F28F9/22
    • F25B39/028F25B41/06F28D1/05383F28F9/0282Y10S165/906
    • A comb-like insert having a body and plurality of tapered fingers is installed with its fingers disposed within respective minichannels. The fingers and their respective minichannels are so sized as to restrict the channels and frictionally hold the insert in place in one dimension while providing for gaps in another dimension such that the flow of refrigerant is somewhat obstructed but allowed to pass through the gaps between the insert fingers and the minichannel walls and then expand as it passes along the tapered fingers to thereby provide a more homogenous mixture to the individual minichannels. A provision is also made to hold the insert in its installed position by way of internal structure within the inlet manifold. In one embodiment, an internal plate is provided for that purpose, and the plate has openings formed therein for the equalization of pressure on either side thereof.
    • 具有主体和多个锥形指状物的梳状插入件被安装成其指状物设置在相应的微通道内。 手指及其各自的小通道的尺寸被限制为限制通道并且将插入件摩擦地保持在一个维度上的适当位置,同时提供另一维度上的间隙,使得制冷剂的流动稍微受到阻碍但允许制冷剂流过插入件之间的间隙 手指和小通道壁,然后当其沿着锥形指状物通过时膨胀,从而为各个微通道提供更均匀的混合物。 还提供了通过进气歧管内的内部结构将插入件保持在其安装位置。 在一个实施例中,为此目的提供内部板,并且板具有形成在其中的开口,用于在其两侧均衡压力。
    • 45. 发明授权
    • Ejector cycle with dual heat absorption heat exchangers
    • 双吸热换热器的喷射器循环
    • US09523364B2
    • 2016-12-20
    • US13990227
    • 2011-07-22
    • Jinliang WangParmesh VermaFrederick J. Cogswell
    • Jinliang WangParmesh VermaFrederick J. Cogswell
    • F25B1/06F25B1/10F25B39/04F25B41/00F04D7/00F25B9/00F25B9/08
    • F25B9/008F04D7/00F25B9/08F25B41/00F25B2309/061F25B2341/0011F25B2341/0014F25B2341/0015F25B2400/0407F25B2400/0409F25B2400/23
    • A system (20) has a first compressor (22) and a second compressor (52). A heat rejection heat exchanger (30) is coupled to the first and second compressors to receive refrigerant compressed by the compressors. The system includes an economizer for receiving refrigerant from the heat rejection heat exchanger and reducing an enthalpy of a first portion of the received refrigerant while increasing an enthalpy of a second portion. The second portion is returned to the compressor. The ejector (66) has a primary inlet (70) coupled to the means to receive a first flow of the reduced enthalpy refrigerant. The ejector has a secondary inlet (72) and an outlet (74). The outlet is coupled to the first compressor to return refrigerant to the first compressor. A first heat absorption heat exchanger (80) is coupled to the economizer to receive a second flow of the reduced enthalpy refrigerant and is upstream of the secondary inlet of the ejector. A second heat absorption heat exchanger (90) is between the outlet of the ejector and the first compressor.
    • 系统(20)具有第一压缩机(22)和第二压缩机(52)。 排热热交换器(30)联接到第一和第二压缩机以接收由压缩机压缩的制冷剂。 该系统包括用于从排热热交换器接收制冷剂并且减少接收的制冷剂的第一部分的焓同时增加第二部分的焓的节能器。 第二部分返回到压缩机。 喷射器(66)具有联接到装置的主入口(70),以接收还原焓制冷剂的第一流。 喷射器具有次级入口(72)和出口(74)。 出口连接到第一压缩机以将制冷剂返回到第一压缩机。 第一吸热式热交换器(80)联接到节能器以接收还原焓制冷剂的第二流,并且在喷射器的次级入口的上游。 第二吸热式热交换器(90)位于喷射器的出口和第一压缩机之间。
    • 46. 发明授权
    • Fluorinated hydrocarbon composition
    • 氟化烃组合物
    • US09353302B2
    • 2016-05-31
    • US13814641
    • 2011-08-11
    • Yinshan FengParmesh Verma
    • Yinshan FengParmesh Verma
    • C09K5/04F25B39/00
    • C09K5/045C09K2205/126C09K2205/22
    • A composition is described including a first fluorinated hydrocarbon compound according to the formula: wherein R1, R2, R3, R4, and R5 are each independently H, F, Cl, Br, or I, n is 0, 1, 2, or 3, and each R′ group is independently H, F, Cl, Br, or I, with the proviso that zero to three of R1, R2, R3, R4, and R5 are F; a second fluorinated hydrocarbon compound according to the formula: wherein m is 0 or 1, and R6, R7, and R8 are each independently H, F, Cl, Br, or I, with the proviso that one of R6, R7, and R8 is F; and a third fluorinated hydrocarbon compound according to the formula: wherein R9, R10, R11, R12 and R13 are each independently H, Cl, Br, or I.
    • 描述了一种组合物,其包括根据下式的第一氟化烃化合物:其中R 1,R 2,R 3,R 4和R 5各自独立地为H,F,Cl,Br或I,n为0,1,2或3 每个R'基团独立地为H,F,Cl,Br或I,条件是R 1,R 2,R 3,R 4和R 5的0至3为F; 一种下式的第二氟化烃化合物:其中m为0或1,R6,R7和R8各自独立地为H,F,Cl,Br或I,条件是R6,R7和R8 是F 和根据下式的第三氟化烃化合物:其中R 9,R 10,R 11,R 12和R 13各自独立地为H,Cl,Br或I.
    • 48. 发明授权
    • Ejector cycle
    • 喷射器循环
    • US09217590B2
    • 2015-12-22
    • US13375218
    • 2011-01-04
    • Frederick J. CogswellHongsheng LiuParmesh VermaOliver Finckh
    • Frederick J. CogswellHongsheng LiuParmesh VermaOliver Finckh
    • F25B1/00F25B41/00F25B1/10F25B41/04
    • F25B41/00F25B1/10F25B41/043F25B2309/061F25B2341/0012F25B2341/0662F25B2400/13F25B2400/23F25B2500/31F25B2600/2519
    • A system (200; 300; 400; 500; 600) has a compressor (22; 200, 221). A heat rejection heat exchanger (30) is coupled to the compressor to receive refrigerant compressed by the compressor. An ejector (38) has a primary inlet (40) coupled to the heat rejection heat exchanger to receive refrigerant, a secondary inlet (42), and an outlet (44). A separator (48) has an inlet (50) coupled to the outlet of the ejector to receive refrigerant from the ejector, a gas outlet (54), and a liquid outlet (52). One or more valves (244, 246, 248, 250) are positioned to allow switching of the system between first and second modes. In the first mode: refrigerant passes from the heat rejection heat exchanger, through the ejector primary inlet, out the ejector outlet, to the separator; a first flow from the separator gas outlet passes through the compressor to the heat rejection heat exchanger; and a second flow from the separator liquid outlet passes through a heat absorption heat exchanger (64) and through the ejector secondary port. In the second mode: refrigerant passes from the heat rejection heat exchanger to the separator; a first flow from the separator gas outlet passes to the compressor; and a second flow from the separator liquid outlet passes through the heat absorption heat exchanger to the compressor.
    • 系统(200; 300; 400; 500; 600)具有压缩机(22; 200,221)。 排热热交换器(30)联接到压缩机以接收由压缩机压缩的制冷剂。 喷射器(38)具有联接到排热热交换器以接收制冷剂的第一入口(40),次级入口(42)和出口(44)。 分离器(48)具有联接到喷射器的出口的入口(50),以从喷射器接收制冷剂,气体出口(54)和液体出口(52)。 定位一个或多个阀(244,246,248,250)以允许系统在第一和第二模式之间切换。 在第一模式中:制冷剂从排热热交换器通过喷射器主入口从喷射器出口流到分离器; 来自分离器气体出口的第一流动通过压缩机到排热热交换器; 并且来自分离器液体出口的第二流动通过吸热式热交换器(64)并通过喷射器二次端口。 在第二模式中:制冷剂从排热热交换器通过分离器; 来自分离器气体出口的第一流量传递到压缩机; 并且来自分离器液体出口的第二流动通过吸热热交换器到达压缩机。
    • 49. 发明授权
    • Ejector-type refrigeration cycle and refrigeration device using the same
    • 喷射式制冷循环及其制冷装置
    • US08776539B2
    • 2014-07-15
    • US13521753
    • 2011-07-20
    • Parmesh VermaJinliang Wang
    • Parmesh VermaJinliang Wang
    • F25B1/00
    • F25B41/00F25B43/006F25B2309/061F25B2341/0012F25B2341/0015
    • A system has first and second compressors (22, 180), a heat rejection heat exchanger (30), an ejector (38), a heat absorption heat exchanger (64), and a separator (48). The heat rejection heat exchanger (30) is coupled to the compressor to receive refrigerant compressed by the compressor. The ejector (38) has a primary inlet (40) coupled to the heat rejection exchanger (30) to receive refrigerant, a secondary inlet (42), and an outlet (44). The separator (48) has an inlet coupled to the outlet of the ejector to receive refrigerant from the ejector. The separator has a gas outlet (54) coupled to the compressor (22) to return refrigerant to the first compressor. The separator has a liquid outlet (52) coupled to the secondary inlet of the ejector to deliver refrigerant to the ejector (38). The heat absorption heat exchanger (64) is coupled to the liquid outlet of the separator to receive refrigerant. The second compressor (180) is between the separator and the ejector secondary inlet.
    • 系统具有第一和第二压缩机(22,180),排热换热器(30),喷射器(38),吸热热交换器(64)和分离器(48)。 排热热交换器(30)联接到压缩机以接收由压缩机压缩的制冷剂。 喷射器(38)具有联接到排热交换器(30)以接收制冷剂的第一入口(40),次级入口(42)和出口(44)。 分离器(48)具有联接到喷射器的出口的入口以从喷射器接收制冷剂。 分离器具有联接到压缩机(22)以将制冷剂返回到第一压缩机的气体出口(54)。 分离器具有联接到喷射器的次级入口的液体出口(52),以将制冷剂输送到喷射器(38)。 吸热热交换器(64)联接到分离器的液体出口以接收制冷剂。 第二压缩机180位于分离器和喷射器次级入口之间。
    • 50. 发明申请
    • Ejector Cycle
    • 喷射器循环
    • US20130251505A1
    • 2013-09-26
    • US13990227
    • 2011-07-22
    • Jinliang WangParmesh VermaFrederick J. Cogswell
    • Jinliang WangParmesh VermaFrederick J. Cogswell
    • F04D7/00
    • F25B9/008F04D7/00F25B9/08F25B41/00F25B2309/061F25B2341/0011F25B2341/0014F25B2341/0015F25B2400/0407F25B2400/0409F25B2400/23
    • A system (20) has a first compressor (22) and a second compressor (52). A heat rejection heat exchanger (30) is coupled to the first and second compressors to receive refrigerant compressed by the compressors. The system includes an economizer for receiving refrigerant from the heat rejection heat exchanger and reducing an enthalpy of a first portion of the received refrigerant while increasing an enthalpy of a second portion. The second portion is returned to the compressor. The ejector (66) has a primary inlet (70) coupled to the means to receive a first flow of the reduced enthalpy refrigerant. The ejector has a secondary inlet (72) and an outlet (74). The outlet is coupled to the first compressor to return refrigerant to the first compressor. A first heat absorption heat exchanger (80) is coupled to the economizer to receive a second flow of the reduced enthalpy refrigerant and is upstream of the secondary inlet of the ejector. A second heat absorption heat exchanger (90) is between the outlet of the ejector and the first compressor.
    • 系统(20)具有第一压缩机(22)和第二压缩机(52)。 排热热交换器(30)联接到第一和第二压缩机以接收由压缩机压缩的制冷剂。 该系统包括用于从排热热交换器接收制冷剂并且减少接收的制冷剂的第一部分的焓同时增加第二部分的焓的节能器。 第二部分返回到压缩机。 喷射器(66)具有联接到装置的主入口(70),以接收还原焓制冷剂的第一流。 喷射器具有次级入口(72)和出口(74)。 出口连接到第一压缩机以将制冷剂返回到第一压缩机。 第一吸热式热交换器(80)联接到节能器以接收还原焓制冷剂的第二流,并且在喷射器的次级入口的上游。 第二吸热式热交换器(90)位于喷射器的出口和第一压缩机之间。