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    • 3. 发明授权
    • High pressure heat exchanger
    • 高压热交换器
    • US06892803B2
    • 2005-05-17
    • US10299283
    • 2002-11-19
    • Stephen B. MemoryJianmin YinGregory G. Hughes
    • Stephen B. MemoryJianmin YinGregory G. Hughes
    • F28D1/00F28D1/047F28D7/00F28F1/02F28D7/08
    • F28F1/022F28D1/0478F28D7/0033F28D2021/0073
    • A heat exchanger including inlet and outlet header portions for a refrigerant (such as CO2), serpentine multiport tubes each with a plurality of aligned tube runs, and at least three plate assembly fluid paths. Each plate assembly fluid path includes a pair of spaced plates secured together at their edges to define an enclosed space with a fluid inlet and fluid outlet on opposite sides of the space. One plate of one fluid path is positioned against first aligned tube runs, one plate of a second of the fluid paths is positioned against second aligned tube runs, and a third fluid path is positioned between the first and second aligned tube runs. The plates may be substantially identical to one another.
    • 包括用于制冷剂(例如CO 2 2)的入口和出口集管部分的热交换器,每个具有多个对准的管道的蛇形多管端管和至少三个板组装流体路径。 每个板组件流体路径包括一对间隔开的板,它们在其边缘处固定在一起以限定具有在该空间的相对侧上的流体入口和流体出口的封闭空间。 一个流体路径的一个板被定位成抵抗第一对准的管道运行,第二个流体路径的一个板抵靠第二对准的管道定位,并且第三流体路径被定位在第一和第二对准的管道之间。 板可以基本上彼此相同。
    • 5. 发明授权
    • Suction line heat exchanger for CO2 cooling system
    • 二氧化碳冷却系统吸入管换热器
    • US07261151B2
    • 2007-08-28
    • US10718274
    • 2003-11-20
    • Stephen B. MemoryJianmin Yin
    • Stephen B. MemoryJianmin Yin
    • G05D16/00F25B13/00
    • F25B40/00F25B1/10F25B9/008F25B41/067F25B2309/061F25B2400/0411F25B2400/052F25B2400/054F25B2500/07F28D7/0008F28D7/0016F28D7/024
    • A heat exchanger including a suction line for gaseous or two phase refrigerant output from an evaporator and a capillary tube carrying cooled refrigerant to the evaporator. The suction line includes first and second substantially parallel straight cylindrical portions connected in series, with first and second portions of the capillary tube in series and helically wound around the suction line second and first portions, respectively. A valve for bypassing the capillary tube is responsive to a selected pressure differential between the capillary tube inlet and outlet. A U-shaped portion or accumulator connect the suction line first and second portions. An accumulator alternately is between the evaporator and the suction line portion wound by the capillary tube, with a phase separation chamber connected to an accumulator by a vertical pipe. The accumulator includes a discharge opening to return the oil to the system.
    • 一种热交换器,其包括从蒸发器输出的用于气态或两相制冷剂的吸入管线和将冷却的制冷剂携带到蒸发器的毛细管。 吸入管线包括串联连接的第一和第二基本平行的直的圆柱形部分,毛细管的第一和第二部分分别串联缠绕在吸入管线第二和第一部分周围。 用于绕过毛细管的阀响应于毛细管入口和出口之间的选定压力差。 U形部分或蓄能器连接吸入管线第一和第二部分。 蓄热器交替地位于蒸发器和由毛细管缠绕的吸入管线部分之间,相分离室通过垂直管连接到蓄能器。 蓄能器包括用于将油返回到系统的排放口。
    • 9. 发明申请
    • Integrated heat exchanger for use in a refrigeration system
    • 用于制冷系统的集成热交换器
    • US20050279127A1
    • 2005-12-22
    • US10871747
    • 2004-06-18
    • Tao JiaStephen MemoryJianmin Yin
    • Tao JiaStephen MemoryJianmin Yin
    • F25B1/10F25B9/00F25B40/00F28D1/04F25B27/00F25B39/04F25B41/00
    • F28D1/0443F25B1/10F25B9/008F25B40/00F25B2309/061F25B2500/18F28D2021/0073F28F2009/0287
    • A refrigeration system includes a multiple stage compressor 10 having at least two stages 12,14 for sequentially compressing the refrigerant together with a gas cooler 21 connected to the compressor 10 for receiving compressed refrigerant from the last stage 14 of the compressor to cool the same. An evaporator 18 is connected to the gas cooler 21 via an expansion device to receive cool refrigerant therefrom and cool the fluid stream passing through the evaporator 18. A return passage connects the evaporator 18 to the first stage 12 of the compressor and an intercooler 26 is connected between the first stage 12 and the last stage 14 of the compressor to cool refrigerant compressed by the first stage 12 and direct the refrigerant cooled thereby to the last stage 14 for further compression. The intercooler 26 and the gas cooler 21 are integrated into a single unit 22 and receive a single cooling heat exchange fluid and the gas cooler 21 has a larger heat transfer surface area than the intercooler 26.
    • 制冷系统包括具有至少两个级12,14的多级压缩机10,用于将制冷剂与连接到压缩机10的气体冷却器21连续地压缩,以从压缩机的最后级14接收压缩的制冷剂以使其冷却。 蒸发器18经由膨胀装置连接到气体冷却器21,以从其中接收冷却的制冷剂,并冷却通过蒸发器18的流体流。 回流通道将蒸发器18连接到压缩机的第一级12,并且中间冷却器26连接在压缩机的第一级12和最后级14之间,以冷却由第一级12压缩的制冷剂,并将冷却的制冷剂引导至 最后一个阶段14进一步压缩。 中间冷却器26和气体冷却器21被集成在一个单元22中并且接纳单个冷却热交换流体,并且气体冷却器21具有比中间冷却器26更大的传热表面积。
    • 10. 发明申请
    • Vapor compression cooling system for cooling electronics
    • 用于冷却电子的蒸气压缩冷却系统
    • US20070095087A1
    • 2007-05-03
    • US11264406
    • 2005-11-01
    • Michael WilsonJonathan WatteletJianmin Yin
    • Michael WilsonJonathan WatteletJianmin Yin
    • F25D23/12F25B41/00H05K7/20
    • F25B40/00G06F1/20G06F2200/201
    • A vapor compression cooling system and method (10) is provided for cooling one or more microprocessors (12,14) via one or more cold plates (22,24) mated with the microprocessor(s). Each cold plate (22,24) includes an evaporator (32,34), and the cooling system (10) is designed to operate such that the quality of the refrigerant exiting the evaporator(s) (32,34) is less than 100% so as to maximize the cooling ability of the cold plate(s) (22,24), i.e., to avoid dry-out of the evaporator(s) (32,34). A suction line heat exchanger (26) is provided to protect the compressor (16) of the system (10) by increasing the quality of the refrigerant from the evaporator to at least 100% so as to provide vapor phase refrigerant to the compressor (16).
    • 提供蒸气压缩冷却系统和方法(10),用于经由与微处理器配合的一个或多个冷板(22,24)冷却一个或多个微处理器(12,14)。 每个冷板(22,24)包括蒸发器(32,34),并且冷却系统(10)被设计成使得离开蒸发器(32,34)的制冷剂的质量小于100 以便最大化冷板(22,24)的冷却能力,即避免蒸发器(32,34)的干燥。 吸入管线热交换器26被设置成通过将制冷剂从蒸发器的质量提高到至少100%来保护系统(10)的压缩机(16),以便向压缩机(16)提供气相制冷剂 )。