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    • 3. 发明申请
    • TURBINE INLET CONDITION CONTROLLED ORGANIC RANKINE CYCLE
    • 涡轮机入口控制有机排放循环
    • WO2011159415A2
    • 2011-12-22
    • PCT/US2011/036578
    • 2011-05-16
    • GENERAL ELECTRIC COMPANYKOPECEK, HerbertAST, GaborFREY, Thomas, JohannesHUCK, Pierre, Sebastien
    • KOPECEK, HerbertAST, GaborFREY, Thomas, JohannesHUCK, Pierre, Sebastien
    • F01K7/34
    • F01K25/10F01K13/02F22G5/00
    • A pressure sensor measures an organic Rankine cycle (ORC) working fluid pressure in front of a radial inflow turbine, while a temperature sensor measures an ORC working fluid temperature in front of the radial inflow turbine. A controller responsive to algorithmic software determines a superheated temperature of the working fluid in front of the radial inflow turbine based on the measured, working fluid pressure and the measured working fluid temperature. The controller then manipulates the speed of a working fluid pump, the pitch of turbine variable inlet guide vanes when present, and combinations thereof, in response to the determined superheated temperature to maintain the superheated temperature of the ORC working fluid in front of the radial inflow turbine close to a predefined set point. The superheated temperature can thus be maintained in the absence of sensors other than pressure and. temperature sensors.
    • 压力传感器测量径向流入涡轮机前面的有机朗肯循环(ORC)工作流体压力,而温度传感器测量径向流入涡轮机前面的ORC工作流体温度。 响应于算法软件的控制器基于测量的工作流体压力和所测量的工作流体温度来确定径向流入涡轮机前面的工作流体的过热温度。 然后,控制器响应于确定的过热温度来操纵工作流体泵的速度,当存在涡轮机可变入口导向叶片时的间距及其组合,以将ORC工作流体的过热温度保持在径向流入前面 涡轮机靠近预定义的设定点。 因此,在不存在压力以外的传感器的情况下可以维持过热温度。 温度传感器。