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    • 1. 发明授权
    • Thermodynamic amplifier cycle system and method
    • 热力学放大器循环系统及方法
    • US08418466B1
    • 2013-04-16
    • US12965684
    • 2010-12-10
    • David Hardgrave
    • David Hardgrave
    • F03G7/00F01K13/00F01K7/34
    • F01K23/02F01K7/32F03G7/00
    • The present invention is directed at the thermodynamic property amplification of a given thermal supply, provided by hydrocarbon combustion or in the preferred application heat provided by low-grade geothermal energy from the earth, for a vapor power cycle. The present invention achieves the desired objectives by segregating the compressible supercritical energy stream from the heat exchanger (boiler) into hot and cool fractions using a vortex tube, where the hot temperature is elevated above the heat exchanger temperature; and adding back heat (enthalpy) to the cool stream increasing the cool temperature to that of the geothermal heat exchanger. The heat-exchanger (boiler) supercritical gaseous mass flow segregated by a counterflow vortex tube (or bank of vortex tubes) forms hot and cool fractions where the hot temperature is raised above the heat-exchanger supply temperature, and heat (enthalpy) is added to the cool stream thereby increasing the cool temperature to that of the heat exchanger supply temperature.
    • 本发明涉及通过碳氢化合物燃烧提供的给定热供应的热力学性质扩增或者在蒸汽发电循环中由地下低等级地热能提供的优选应用热。 本发明通过使用涡流管将来自热交换器(锅炉)的可压缩超临界能量流分离成热和冷部分来实现期望的目标,其中热温度升高到热交换器温度以上; 并将回热(焓)加入到冷流中,将冷却温度提高到地热换热器的温度。 通过逆流涡流管(或涡流管组)隔离的热交换器(锅炉)超临界气体质量流形成热和冷部分,其中热温度升高到热交换器供应温度以上,并加入热(焓) 从而将冷却温度提高到热交换器供应温度的温度。