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    • 3. 发明授权
    • Low temperature generation process and expansion engine
    • 低温发电过程和膨胀发动机
    • US5319948A
    • 1994-06-14
    • US876273
    • 1992-04-30
    • Arnold BlumManfred Schmidt
    • Arnold BlumManfred Schmidt
    • F25B9/00F03G7/00F25B9/06F25B9/14
    • F03G7/002F25B9/065F25B9/145F02G2243/52F25B2309/1402F25B2309/1408F25B2309/1425
    • In a low temperature generation process, compressed gas (3) at high pressure enters from an inlet nozzle (1) and alternately expands into one of two resonator tubes (A,B) of an expansion engine. The expanding gas excites standing acoustic waves (4) in the resonator tubes (A,B). The acoustic energy of the waves (4) is converted into electrical energy by acoustic/electric power converters and is led away outside the "cold area" of the tubes. The expansion engine contains one or more resonator tubes with a common inlet nozzle (1). Each resonator tube has an acoustic/electric power converter (5) and an exhaust port (6). Together with a compressor, a heat exchanger and a heat sink, the expansion engine provides a very effective cooling system which may be used for the cooling of small electronic devices like chips or modules.
    • 在低温发生过程中,高压下的压缩气体(3)从入口喷嘴(1)进入并交替地膨胀成膨胀发动机的两个谐振管(A,B)之一。 膨胀气体激励谐振器管(A,B)中的驻波(4)。 波浪(4)的声能通过声/电功率转换器转换成电能,并被引导到管的“冷区”之外。 膨胀发动机包含一个或多个具有公共入口喷嘴(1)的谐振管。 每个谐振器管具有声/电功率转换器(5)和排气口(6)。 与压缩机,热交换器和散热器一起,膨胀发动机提供了非常有效的冷却系统,其可用于冷却诸如芯片或模块的小型电子设备。