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    • 11. 发明申请
    • CONVERSION OF HEAT INTO MECHANICAL ENERGY BY MEANS OF A JET COMPRESSOR
    • 通过喷气式压缩机将机组转换成机械能
    • US20090249780A1
    • 2009-10-08
    • US12300692
    • 2007-05-10
    • Erwin OserHubert HammMichael Rannow
    • Erwin OserHubert HammMichael Rannow
    • F02G1/04
    • F03G6/065F01K19/08F01K25/06F01K25/08F04F5/54Y02E10/46
    • The invention relates to a plant and a method for the conversion of heat energy into mechanical, electrical and/or thermal energy, the method comprising at least two circuits which are connected by means of at least one common subsection, the first circuit having at least one expansion apparatus (9), and the common subsection being connected to the first and second circuit via at least one jet compressor (3), a working medium being routed in the first circuit and a propellant being routed in the second circuit and a mixture of working medium and propellant being routed in the common subsection, the mixture formed in the jet compressor (3) subsequently being separated into a working medium stream and a propellant stream in a separation apparatus (6), the working medium being recirculated into the first circuit and being supplied to an evaporator unit (8), the evaporated working medium being supplied to the expansion apparatus (9) and subsequently to the jet compressor (3), and separated propellant being recirculated into the second circuit and, for the purpose of the absorption of heat energy, being supplied to a collector (2) and, after heat energy absorption, being supplied to the jet compressor (3).
    • 本发明涉及一种用于将热能转化为机械,电和/或热能的设备和方法,所述方法包括通过至少一个共同子部分连接的至少两个电路,所述第一电路至少具有 一个膨胀装置(9),并且公共部分经由至少一个喷射式压缩机(3)连接到第一和第二回路,工作介质在第一回路中被路由,并且推进剂在第二回路中路由并且混合 工作介质和推进剂在公共部分中布置,形成在喷射压缩机(3)中的混合物随后在分离装置(6)中分离成工作介质流和推进剂流,工作介质再循环到第一 电路并被供应到蒸发器单元(8),蒸发的工作介质被供应到膨胀装置(9)并随后被供应到喷射式压缩机(3),并且分离 推进剂被再循环到第二回路中,并且为了吸收热能,被供给到收集器(2),并且在热能吸收之后被供应到喷射压缩机(3)。
    • 18. 发明授权
    • Method and apparatus for a thermodynamic cycle by use of compression
    • 通过使用压缩的热力循环的方法和装置
    • US4553397A
    • 1985-11-19
    • US506708
    • 1983-06-20
    • Joseph Wilensky
    • Joseph Wilensky
    • F01K19/08F01K21/00F25B9/00F01K25/06
    • F01K21/00F01K19/08F25B9/00
    • A working fluid in the gaseous state at some initial temperature and pressure is expanded polytropically to a resulting exhaust fluid having some lower temperature and pressure in order to produce useful work. Large quantities of a pressured motive liquid are then employed as the vehicle for approximating an isenthalpic compression of the working fluid. The preferred method for effecting this recompression is to provide an overall adiabatic environment within which the two fluids are placed in thermal but not physical communication. The working fluid is then energized by direct compression during which partial condensation of the working fluid is accompanied by heat transfer to the motive liquid. Thereafter the two fluids are mixed, with the resulting two phases permitting separation and reconstitution of the motive and working fluids to their initial states to complete the thermodynamic cycle which, depending upon the fluids selected, can be located in a broad range of the temperature spectrum.
    • 在某些初始温度和压力下,处于气态的工作流体被多孔膨胀,以产生具有较低温度和压力的所得排气流体,以产生有用的作用。 然后使用大量的加压动力液作为近似工作流体的等焓压缩的载体。 实现该再压缩的优选方法是提供一种整体绝热的环境,其中两种流体被放置在热而不是物理的连通中。 然后通过直接压缩对工作流体进行通电,在此期间工作流体的部分冷凝伴随着向运动液体的热传递。 此后,两种流体混合,所得到的两相允许将动力和工作流体分离并重新构成其初始状态,以完成热力学循环,其根据所选流体可位于宽范围的温度谱 。