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    • 54. 发明公开
    • 시동 작동 중에 프로세스 가스의 배출을 최소화하기 위한 방법 및 압축기 조립체
    • 压缩机总成和最小化启动运行过程中气体的方法
    • KR1020130054924A
    • 2013-05-27
    • KR1020120129887
    • 2012-11-16
    • 에어 프로덕츠 앤드 케미칼스, 인코오포레이티드
    • 초크데이비드조나단파레스데이비드존
    • F04B49/00F04B39/06
    • F17C5/02F04D29/5833F04D29/584F17C2205/0323F17C2205/0335F17C2221/033F17C2223/0161F17C2223/045F17C2223/047F17C2227/0135F17C2227/0157F17C2227/0337F17C2227/0344F17C2227/0355F17C2227/0386F17C2250/0439F17C2250/072F17C2270/02F17C2270/05Y02E60/321
    • PURPOSE: A method for minimizing the discharge of process gas in operation and a compressor assembly are provided to compress ultra-low fluid by utilizing a multi-stage compressor. CONSTITUTION: A fluid compressing system(10) for compressing fluid includes a first heat exchanger(40), a second heat exchanger(48), a multi-stage compressor(13), and a first cooling agent loop(80). The first heat exchanger performs a heat exchange between a first cooling agent and an external heat sink. The second heat exchanger supplies the heat obtained by the heat exchange with the first cooling agent to fluid contained in a tank(12). The multi-stage compressor includes a first compression stage(14), a third heat exchange(60), a first cooling jacket, and a second compression stage(15). The first stage is operationally arranged in order to receive fluid from the second heat exchanger. The first cooling jacket cools the fluid inside the first compression stage by the heat exchange with the first cooling agent. The second compression stage is operationally arranged in order to receive at least some of the fluid from the first compression stage. The first cooling agent loop is operationally arranged in order to circulate the first cooling agent via one or more among the first to third heat exchangers and the first cooling jacket.
    • 目的:提供一种使工作气体排放最小化的方法和压缩机组件,以通过利用多级压缩机压缩超低流体。 构成:用于压缩流体的流体压缩系统(10)包括第一热交换器(40),第二热交换器(48),多级压缩机(13)和第一冷却剂回路(80)。 第一热交换器在第一冷却剂和外部散热器之间进行热交换。 第二热交换器将与第一冷却剂的热交换获得的热量提供给容纳在罐(12)中的流体。 多级压缩机包括第一压缩级(14),第三热交换器(60),第一冷却套和第二压缩级(15)。 第一阶段是可操作地布置以便从第二热交换器接收流体。 第一冷却套通过与第一冷却剂的热交换来冷却第一压缩阶段内的流体。 第二压缩级可操作地布置以便接收来自第一压缩级的至少一些流体。 为了使第一冷却剂通过第一至第三热交换器和第一冷却套中的一个或多个循环,第一冷却剂回路被可操作地布置。