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    • 1. 发明授权
    • Advanced humid air turbine power plant
    • 先进的潮湿空气涡轮发电厂
    • US07587887B2
    • 2009-09-15
    • US11167468
    • 2005-06-28
    • Yasuhiro HoriuchiShinya MarushimaHidefumi ArakiShigeo Hatamiya
    • Yasuhiro HoriuchiShinya MarushimaHidefumi ArakiShigeo Hatamiya
    • F02C3/30F02C7/16F02C7/18
    • F02C3/30F02C7/18
    • An advanced humid air turbine power plant capable of suppressing condensation of moisture in a cooling channel, which is provided to cool a high-temperature component of a gas turbine, in a start up stage, a coast down stage, and a load varying state of the gas turbine. In the advanced humid air turbine power plant comprising a compressed air supply line for supplying compressed air generated by a compressor to the high-temperature component of the gas turbine, and a humidified air supply line for supplying humidified air generated in a humidifying tower to the high-temperature component of the gas turbine, the power plant further comprises valves capable of adjusting respective air flow rates in the compressed air supply line and the humidified air supply line. A coolant is switched over from the compressed air to the humidified air in the start up stage and the load increasing stage of the gas turbine, and from the humidified air to the compressed air in the load decreasing stage and the coast down stage, as well as in the event of an abnormality in a humidifying line.
    • 一种先进的湿式空气涡轮发电厂,其能够抑制在启动阶段,下降阶段和负载变化状态下设置用于冷却燃气轮机的高温部件的冷却通道中的水分的冷凝 燃气轮机。 在先进的湿式空气涡轮发电厂中,包括用于将由压缩机产生的压缩空气供给到燃气轮机的高温部件的压缩空气供给管线,以及用于将在加湿塔中产生的加湿空气供给到加湿塔 燃气轮机的高温部件,发电厂还包括能够调节压缩空气供应管线和加湿空气供应管线中的相应空气流量的阀。 在起动阶段和燃气轮机的负载增加阶段以及在减载阶段和下降阶段的加湿空气到压缩空气中,冷却剂从压缩空气切换到加湿空气,以及 如在加湿线中发生异常的情况。
    • 2. 发明申请
    • Advanced humid air turbine power plant
    • 先进的潮湿空气涡轮发电厂
    • US20070017227A1
    • 2007-01-25
    • US11167468
    • 2005-06-28
    • Yasuhiro HoriuchiShinya MarushimaHidefumi ArakiShigeo Hatamiya
    • Yasuhiro HoriuchiShinya MarushimaHidefumi ArakiShigeo Hatamiya
    • F02C3/30
    • F02C3/30F02C7/18
    • An advanced humid air turbine power plant capable of suppressing condensation of moisture in a cooling channel, which is provided to cool a high-temperature component of a gas turbine, in a start up stage, a coast down stage, and a load varying state of the gas turbine. In the advanced humid air turbine power plant comprising a compressed air supply line for supplying compressed air generated by a compressor to the high-temperature component of the gas turbine, and a humidified air supply line for supplying humidified air generated in a humidifying tower to the high-temperature component of the gas turbine, the power plant further comprises valves capable of adjusting respective air flow rates in the compressed air supply line and the humidified air supply line. A coolant is switched over from the compressed air to the humidified air in the start up stage and the load increasing stage of the gas turbine, and from the humidified air to the compressed air in the load decreasing stage and the coast down stage, as well as in the event of an abnormality in a humidifying line.
    • 一种先进的湿式空气涡轮发电厂,其能够抑制在启动阶段,下降阶段和负载变化状态下设置用于冷却燃气轮机的高温部件的冷却通道中的水分冷凝 燃气轮机。 在先进的湿式空气涡轮发电厂中,包括用于将由压缩机产生的压缩空气供给到燃气轮机的高温部件的压缩空气供给管线,以及用于将在加湿塔中产生的加湿空气供给到加湿塔 燃气轮机的高温部件,发电厂还包括能够调节压缩空气供应管线和加湿空气供应管线中的相应空气流量的阀。 在起动阶段和燃气轮机的负载增加阶段以及在减载阶段和下降阶段的加湿空气到压缩空气中,冷却剂从压缩空气切换到加湿空气,以及 如在加湿线中发生异常的情况。
    • 3. 发明申请
    • ADVANCED HUMID AIR TURBINE POWER PLANT
    • 高级湿度空气涡轮发电厂
    • US20090293493A1
    • 2009-12-03
    • US12537669
    • 2009-08-07
    • Yasuhiro HoriuchiShinya MarushimaHidefumi ArakiShigeo Hatamiya
    • Yasuhiro HoriuchiShinya MarushimaHidefumi ArakiShigeo Hatamiya
    • F02C3/30
    • F02C3/30F02C7/18
    • An advanced humid air turbine power plant capable of suppressing condensation of moisture in a cooling channel, which is provided to cool a high-temperature component of a gas turbine, in a start up stage, a coast down stage, and a load varying state of the gas turbine. In the advanced humid air turbine power plant comprising a compressed air supply line for supplying compressed air generated by a compressor to the high-temperature component of the gas turbine, and a humidified air supply line for supplying humidified air generated in a humidifying tower to the high-temperature component of the gas turbine, the power plant further comprises valves capable of adjusting respective air flow rates in the compressed air supply line and the humidified air supply line. A coolant is switched over from the compressed air to the humidified air in the start up stage and the load increasing stage of the gas turbine, and from the humidified air to the compressed air in the load decreasing stage and the coast down stage, as well as in the event of an abnormality in a humidifying line.
    • 一种先进的湿式空气涡轮发电厂,其能够抑制在启动阶段,下降阶段和负载变化状态下设置用于冷却燃气轮机的高温部件的冷却通道中的水分的冷凝 燃气轮机。 在先进的湿式空气涡轮发电厂中,包括用于将由压缩机产生的压缩空气供给到燃气轮机的高温部件的压缩空气供给管线,以及用于将在加湿塔中产生的加湿空气供给到加湿塔 燃气轮机的高温部件,发电厂还包括能够调节压缩空气供应管线和加湿空气供应管线中的相应空气流量的阀。 在起动阶段和燃气轮机的负载增加阶段以及在减载阶段和下降阶段的加湿空气到压缩空气中,冷却剂从压缩空气切换到加湿空气,以及 如在加湿线中发生异常的情况。
    • 8. 发明授权
    • Cooling apparatus of a gas turbine system
    • 燃气轮机系统的冷却装置
    • US08240122B2
    • 2012-08-14
    • US11767805
    • 2007-06-25
    • Hidefumi ArakiTakanori ShibataShigeo HatamiyaMoriaki Tsukamoto
    • Hidefumi ArakiTakanori ShibataShigeo HatamiyaMoriaki Tsukamoto
    • F02C9/00
    • F02C7/1435F04D29/5846
    • The amount of water to be injected in an intercooler is controlled to cool the compressed gas to the saturation temperature. It is difficult to adjust the amount of the water to be injected, however, since the temperature of the compressed gas at an intercooler outlet is actually higher than the saturation temperature. An intercooling system is configured so as to cool a gas to the saturation temperature without controlling the amount of water injection and thereby maintain the reliability of the compressor while improving the cooling efficiency. The intercooling system is located between a plurality of compression stages of a gas compressor to cool the gas that has been in the compressor. A desired amount of liquid is sprinkled to cool the compressed gas while restraining inflow of the liquid into the compression stages.
    • 控制在中间冷却器中注入的水的量以将压缩气体冷却至饱和温度。 然而,由于中间冷却器出口处的压缩气体的温度实际上高于饱和温度,因此难以调节注入的水量。 中间冷却系统被构造成将气体冷却至饱和温度,而不控制注水量,从而在提高冷却效率的同时保持压缩机的可靠性。 中间冷却系统位于气体压缩机的多个压缩级之间,以冷却已经在压缩机中的气体。 喷洒所需量的液体以冷却压缩气体,同时抑制液体进入压缩级。
    • 10. 发明申请
    • HEAT PUMP SYSTEM AND HEAT PUMP OPERATION METHOD
    • 热泵系统和热泵运行方法
    • US20090126377A1
    • 2009-05-21
    • US12355245
    • 2009-01-16
    • TAKANORI SHIBATAShigeo HatamiyaToshihiko Fukushima
    • TAKANORI SHIBATAShigeo HatamiyaToshihiko Fukushima
    • F25B9/00F25B27/00F25B1/00F02C1/04
    • B01D19/0068B01D3/007F01K3/006F22B3/045Y02P70/34
    • A compact heat pump system and a heat pump operation method, which can avoid the occurrence of surging in a compressor at startup of a heat pump and can directly supply vapor of a working medium produced by the compressor to an external heat-utilizing facility. The heat pump system comprises an evaporator for recovering heat of an external heat source to a working medium supplied as liquid water from the exterior via a water feed channel, thereby evaporating the working medium, a compressor for compressing the working medium evaporated in the evaporator and increasing temperature of the evaporated working medium, and a driving unit for giving motive power to drive the compressor. The heat pump system further comprises a supply channel for supplying, as a heat source, vapor of the working medium having temperature increased by the compressor to an external heat-utilizing facility, and a return channel branched from the supply channel and introducing the working medium discharged from the compressor to the evaporator.
    • 一种紧凑的热泵系统和热泵操作方法,其可以避免在启动热泵时在压缩机中发生浪涌,并且可以将由压缩机生产的工作介质的蒸汽直接供应到外部热利用设施。 热泵系统包括:蒸发器,用于将外部热源的热量经由供水通道从外部回收到作为液体水供应的工作介质,从而蒸发工作介质;压缩机,用于压缩蒸发器中蒸发的工作介质; 提高蒸发的工作介质的温度,以及用于提供驱动压缩机的动力的驱动单元。 该热泵系统还包括:供给通道,用于将具有由压缩机升高的温度的工作介质的蒸气供给到外部热利用设备;以及从供给通道分支的回流通道,并将工作介质 从压缩机排放到蒸发器。