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    • 61. 发明授权
    • Hydrogen burning turbine plant
    • 燃气轮机厂
    • US06282883B1
    • 2001-09-04
    • US09145018
    • 1998-09-01
    • Kazuo UematsuTakashi Sonoda
    • Kazuo UematsuTakashi Sonoda
    • F02C322
    • F01K25/005
    • Easy plant starting is provided in a hydrogen burning turbine plant for burning hydrogen and oxygen to generate high temperature steam for driving a turbine. There is constructed a semi-closed cycle such that low temperature steam from compressor 1 enters combustion chamber 2, hydrogen and oxygen are burned in the combustion chamber 2 to become high temperature steam for driving turbine 3, and the steam provides exhaust heat at heat exchanger 4 and then returns to low pressure compressor 1-1. Steam from midway of the heat exchanger 4 enters low pressure turbine 6 for work therein, and is condensed to water. The water from condenser 7 is heated at heat exchangers 4-4, 4-3, 4-2 to become steam for driving high pressure turbine 5, and returns to the combustion chamber 2 through the heat exchanger 4. An a auxiliary boiler is provided at inlet side of the compressor 1, and the high temperature steam generated at the combustion chamber 2 at the starting time is diluted and supplied into the turbine 3. Thus, the starting can be performed smoothly.
    • 在氢燃烧涡轮机设备中提供容易的设备启动,用于燃烧氢气和氧气以产生用于驱动涡轮机的高温蒸汽。 构成了半封闭循环,使得来自压缩机1的低温蒸汽进入燃烧室2,氢和氧在燃烧室2中燃烧,成为用于驱动涡轮3的高温蒸汽,蒸汽在热交换器 4,然后返回低压压缩机1-1。 来自热交换器4的中间的蒸汽进入低压涡轮机6以在其中工作,并且被冷凝成水。 来自冷凝器7的水在热交换器4-4,4-3,4-2处被加热,以变成用于驱动高压涡轮机5的蒸汽,并且通过热交换器4返回到燃烧室2.提供辅助锅炉 在压缩机1的入口侧,并且在起动时在燃烧室2产生的高温蒸汽被稀释并供给到涡轮3.因此,起动可以顺利进行。
    • 62. 发明授权
    • Cooling steam control method for combined cycle power generation plants
    • 联合循环发电厂冷却蒸汽控制方法
    • US06279308B1
    • 2001-08-28
    • US09308241
    • 1999-05-21
    • Takashi SonodaYoshiyuki KitaTomoka Tanaka
    • Takashi SonodaYoshiyuki KitaTomoka Tanaka
    • F02C1310
    • F01K23/108Y02E20/16
    • The present invention is characterized in controlling the amount of cooling steam supplied to high temperature parts 8 in accordance with the dynamic characteristics of exhaust heat recovery boiler 2 when the load on gas turbine 1C is changing, in a gas turbine steam cooling system provided with an exhaust heat recovery boiler 2 for operating gas turbine 1C and generating steam using the exhaust heat from gas turbine 1C, the combined cycle plant being controlled by driving the steam turbines 3,4 by directing a steam line from exhaust heat recovery boiler 2 to steam turbines 3,4, cooling high temperature parts 8 of gas turbine 1C by branching the steam line from exhaust heat recovery boiler 2, and returning the cooled steam to the steam line.
    • 本发明的特征在于,在设置有燃气轮机蒸气冷却系统的燃气轮机蒸汽冷却系统中,当燃气轮机1C上的负荷变化时,根据废热回收锅炉2的动态特性来控制供给高温部件8的冷却水量 排气热回收锅炉2,用于操作燃气轮机1C并使用来自燃气轮机1C的排气产生蒸汽,所述联合循环设备通过通过将来自废热回收锅炉2的蒸气管线引导到蒸汽涡轮机 3,4,通过从排气热回收锅炉2分支蒸汽管线来冷却燃气轮机1C的高温部件8,并将冷却的蒸汽返回到蒸汽管线。