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    • 1. 发明申请
    • SOLAR ENERGY STORAGE SYSTEM INCLUDING THREE OR MORE RESERVOIRS
    • 太阳能储存系统,包括三个或更多的储存
    • US20130307273A1
    • 2013-11-21
    • US13977691
    • 2011-11-29
    • Leon AfremovGideon Goldwine
    • Leon AfremovGideon Goldwine
    • H02K7/18
    • H02K7/18F03G6/02Y02E10/46
    • A first period may be characterized by relatively high insolation, while a second period may be characterized by relatively low insolation. At the first period, steam is generated using insolation. A portion of the steam produces electricity, while a second portion of the steam is directed to a heat exchanger in thermal communication with thermal reservoirs. A storage fluid is flowed through the heat exchanger from a first reservoir to a second reservoir and/or from the second reservoir to a third reservoir such that enthalpy in the steam second portion is transferred to the storage fluid. At a second period, the storage fluid is reverse-flowed through the heat exchanger from the third to the second reservoir and/or from the second to the first reservoir such that enthalpy in the storage fluid generates steam to produce electricity. Enthalpy during high insolation periods can thus be stored for use during low insolation periods.
    • 第一时期的特征可以是相对较高的日晒,而第二时期的特征可以是日照相对较低。 在第一个时期,使用日晒产生蒸汽。 蒸汽的一部分产生电力,而蒸汽的第二部分被引导到与热储存器热连通的热交换器。 存储流体通过热交换器从第一储存器流到第二储存器和/或从第二储存器流到第三储存器,使得蒸汽第二部分中的焓被转移到储存流体。 在第二时段,存储流体通过热交换器从第三储存器和/或从第二储存器反向流动,使得存储流体中的焓产生蒸汽以产生电力。 因此,在高日照期间的焓值可以在低日照期间储存使用。