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    • 42. 发明授权
    • Geothermal power generation system and method of making power using the system
    • 地热发电系统及其使用方法
    • US08371122B2
    • 2013-02-12
    • US12473139
    • 2009-05-27
    • William E. Lewis
    • William E. Lewis
    • F01K27/00F03G7/00
    • F03G7/04Y02E10/10
    • The present disclosure is directed to geothermal power generation systems. The systems can comprise a first separator is in fluid communication with the geothermal fluid source, the first separator having a high pressure steam outlet and a liquid fraction outlet. A high pressure turbine is in fluid communication with the high pressure steam outlet and is coupled to a first power generator. A high pressure condenser is in fluid communication with the high pressure turbine. A low pressure separator is in fluid communication with the liquid fraction outlet of the first separator, the low pressure separator being capable of separating steam from the liquid fraction outflow and providing low pressure steam through a low pressure steam conduit. A low pressure turbine is in fluid communication with the low pressure steam conduit, the low pressure turbine being coupled to a second power generator. A main condenser is in fluid communication with the low pressure turbine. Methods for generating geothermal power are also discussed.
    • 本公开涉及地热发电系统。 该系统可以包括第一分离器与地热流体源流体连通,第一分离器具有高压蒸汽出口和液体馏分出口。 高压涡轮机与高压蒸汽出口流体连通并且耦合到第一发电机。 高压冷凝器与高压涡轮流体连通。 低压分离器与第一分离器的液体馏分出口流体连通,低压分离器能够将液体馏分流出的蒸汽与低压蒸汽导管相连。 低压涡轮机与低压蒸汽导管流体连通,低压涡轮机耦合到第二发电机。 主冷凝器与低压涡轮流体连通。 还讨论了生成地热能的方法。
    • 45. 发明申请
    • GEOTHERMAL POWER GENERATION SYSTEM AND METHOD OF MAKING POWER USING THE SYSTEM
    • 地热发电系统及使用该系统制造电力的方法
    • US20100300091A1
    • 2010-12-02
    • US12473139
    • 2009-05-27
    • William E. Lewis
    • William E. Lewis
    • F03G4/00
    • F03G7/04Y02E10/10
    • The present disclosure is directed to geothermal power generation systems. The systems can comprise a first separator is in fluid communication with the geothermal fluid source, the first separator having a high pressure steam outlet and a liquid fraction outlet. A high pressure turbine is in fluid communication with the high pressure steam outlet and is coupled to a first power generator. A high pressure condenser is in fluid communication with the high pressure turbine. A low pressure separator is in fluid communication with the liquid fraction outlet of the first separator, the low pressure separator being capable of separating steam from the liquid fraction outflow and providing low pressure steam through a low pressure steam conduit. A low pressure turbine is in fluid communication with the low pressure steam conduit, the low pressure turbine being coupled to a second power generator. A main condenser is in fluid communication with the low pressure turbine. Methods for generating geothermal power are also discussed.
    • 本公开涉及地热发电系统。 该系统可以包括第一分离器与地热流体源流体连通,第一分离器具有高压蒸汽出口和液体馏分出口。 高压涡轮机与高压蒸汽出口流体连通并且耦合到第一发电机。 高压冷凝器与高压涡轮流体连通。 低压分离器与第一分离器的液体馏分出口流体连通,低压分离器能够将液体馏分流出的蒸汽与低压蒸汽导管相连。 低压涡轮机与低压蒸汽导管流体连通,低压涡轮机耦合到第二发电机。 主冷凝器与低压涡轮流体连通。 还讨论了生成地热能的方法。