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    • 9. 发明申请
    • Supersonic vapor compression and heat rejection cycle
    • 超音速蒸气压缩和排热循环
    • US20050048339A1
    • 2005-03-03
    • US10960123
    • 2004-10-07
    • Gerald Fly
    • Gerald Fly
    • F25B1/06H01M8/02H01M8/04G05D16/00
    • H01M8/04074F25B1/06H01M8/04029
    • Method and apparatus for cooling a fuel cell stack. The cooling system uses vaporization cooling of the fuel stack and supersonic vapor compression of the vaporized coolant to significantly increase the temperature and pressure of the liquid coolant flowing through a heat exchanger. By increasing the heat rejection temperature of the coolant delivered to the heat exchanger, the heat transfer area of the heat exchanger can be reduced and the mass flow rate of coolant can also be reduced. The increased fluid pressure is used to circulate the coolant through the cooling system, thereby eliminating the circulation pump associated with conventional systems.
    • 用于冷却燃料电池堆的方法和装置。 冷却系统使用燃料叠层的蒸发冷却和蒸发的冷却剂的超音速蒸气压缩来显着增加流过热交换器的液体冷却剂的温度和压力。 通过增加输送到热交换器的冷却剂的排热温度,可以减少热交换器的传热面积,并且还可以降低冷却剂的质量流量。 增加的流体压力用于使冷却剂循环通过冷却系统,从而消除与常规系统相关联的循环泵。