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    • 73. 发明申请
    • BACKUP FUEL SUPPLY FOR A GAS TURBINE
    • 备用燃油供应气体涡轮机
    • US20140318134A1
    • 2014-10-30
    • US13869385
    • 2013-04-24
    • GENERAL ELECTRIC COMPANY
    • Predrag Popovic
    • F02C7/22
    • F02C7/224F02C3/22F05D2250/13
    • A system for supplying a gaseous fuel to a gas turbine includes a liquefied fuel source for supplying a liquefied fuel to a liquid fuel pump that is disposed downstream from the liquefied fuel source. The liquid fuel pump is sufficient to raise the pressure of the liquefied fuel to a substantially supercritical pressure. A supercritical liquefied fuel vaporizer is disposed downstream from the liquid fuel pump. A heat recovery system is in thermal communication with the liquefied fuel. The heat recovery system is positioned between the liquid fuel source and the supercritical liquefied fuel vaporizer.
    • 用于向燃气轮机供应气体燃料的系统包括用于将液化燃料供应到液化燃料泵的液化燃料源,液化燃料泵设置在液化燃料源的下游。 液体燃料泵足以将液化燃料的压力提高到基本上超临界压力。 超临界液化燃料蒸发器设置在液体燃料泵的下游。 热回收系统与液化燃料热连通。 热回收系统位于液体燃料源和超临界液化燃料蒸发器之间。
    • 76. 发明授权
    • Method for operating a gas turbine plant with a compressor station for gaseous fuel
    • 用于具有用于气体燃料的压缩机站的燃气轮机设备的操作方法
    • US08776528B2
    • 2014-07-15
    • US12779559
    • 2010-05-13
    • Klaus-Dieter LiedtkeMengbin ZhangUlf SchirmeisterAysegul Kirecci
    • Klaus-Dieter LiedtkeMengbin ZhangUlf SchirmeisterAysegul Kirecci
    • F02C9/32F23N1/00F02C7/22F02C9/26F02C3/22F23N5/18
    • F02C7/22F02C3/22F02C9/263F05D2270/3011F05D2270/3013F23N1/002F23N2005/185F23N2025/04F23N2037/20F23N2041/20
    • The disclosure relates to a method for operating a gas turbine plant which is supplied with a fuel gas via a compressor station. The compressor station includes a compressor which compresses the fuel gas which is fed via a gas feed line and delivers it via at least one control valve to a combustion chamber of the gas turbine plant. A bypass system is arranged in parallel to the compressor via which fuel gas can be directed in a switchable manner past the compressor to the at least one control valve. An energy-saving operation can be achieved in a simple manner by continuously measuring the fuel gas pressure at the outlet of the at least one control valve. A minimum fuel gas pressure, which is desired (e.g., necessary) for operation of the gas turbine, at the inlet of the at least one control valve is determined from the measured pressure values in each case. The compressor station can be switched over to bypass operation when the fuel gas pressure which reaches the inlet of the at least one control valve via the bypass system is greater than or equal to the minimum fuel gas pressure.
    • 本公开涉及一种用于操作经由压缩机站供应燃料气体的燃气轮机设备的方法。 压缩机站包括压缩机,其压缩经由气体供给管线供给的燃料气体,并经由至少一个控制阀将其输送到燃气轮机设备的燃烧室。 旁路系统与压缩机并联布置,燃料气体可经由该压缩机以可切换的方式被引导通过压缩机至至少一个控制阀。 通过连续地测量至少一个控制阀的出口处的燃料气体压力,可以简单地实现节能操作。 在每种情况下,从所测量的压力值确定在至少一个控制阀的入口处期望(例如,必要)燃气轮机的最小燃料气体压力。 当通过旁通系统到达至少一个控制阀的入口的燃料气体压力大于或等于最小燃料气体压力时,压缩机站可以切换到旁路操作。
    • 80. 发明申请
    • DEVICES AND METHODS FOR TREATMENT OF HEART FAILURE AND ASSOCIATED CONDITIONS
    • 用于治疗心力衰竭和相关条件的装置和方法
    • US20130338735A1
    • 2013-12-19
    • US13646824
    • 2012-10-08
    • CVRx, Inc.
    • Dimitrios GeorgakopoulosEric Grant Lovett
    • A61N1/372
    • A61N1/36139A61N1/372F01K25/005F02C3/22F02C3/30F05D2220/31
    • Devices and methods of use for identification, treatment and/or management of heart failure and/or associated conditions. An exemplary device may include a first sensor configured to monitor a parameter indicative of a fluid level in a pulmonary circulation of a patient, a second sensor configured to monitor a parameter indicative of a fluid level in a non-pulmonary circulation of a patient, and a control system coupled to the first sensor and second sensor. The control system is configured to provide a baroreflex therapy to the patient based at least in part on the parameter indicative of a fluid level in a pulmonary circulation and the parameter indicative of a fluid level in a non-pulmonary circulation. The baroreflex therapy adjusts at least one of the fluid level in the pulmonary circulation and the fluid level in the non-pulmonary circulation.
    • 用于识别,治疗和/或管理心力衰竭和/或相关病症的装置和方法。 示例性装置可以包括被配置为监测指示患者的肺循环中的液体水平的参数的第一传感器,被配置为监测指示患者的非肺循环中的液体水平的参数的第二传感器,以及 耦合到第一传感器和第二传感器的控制系统。 控制系统被配置为至少部分地基于指示肺循环中的液体水平的参数和指示非肺循环中的液体水平的参数向患者提供压力反射治疗。 压力反射疗法调节肺循环中的液位和非肺循环中的液位中的至少一个。