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    • 1. 发明申请
    • Controller for Gas Turbine Power Plant
    • 燃气轮机发电厂控制器
    • US20140033720A1
    • 2014-02-06
    • US13983140
    • 2011-02-04
    • Eunkyeong KimKazuhito KoyamaShigeo HatamiyaYukinori KatagiriTakuya YoshidaNaohiro KusumiKazuo Takahashi
    • Eunkyeong KimKazuhito KoyamaShigeo HatamiyaYukinori KatagiriTakuya YoshidaNaohiro KusumiKazuo Takahashi
    • F02C9/00
    • F02C9/00F02C3/30F02C7/1435F02C9/20
    • A controller for use in a gas turbine power plant includes a compressor that compresses combustion air; a water-atomization cooling apparatus that sprays water drops of atomized water supplied via a water-atomization flow-rate regulating valve over a flow of air drawn in the compressor; a combustor that mixes the compressed combustion air with fuel to thereby burn a fuel-air mixture and generate combustion gas at high temperature and performs combustion switching during operation; a turbine that uses the combustion gas to drive the compressor and a generator; the water-atomization flow-rate regulating valve that controls a flow rate of the atomized water; and a compressor inlet inner blade that controls a flow rate of air drawn in the compressor. The controller includes control means that calculates a fuel-air ratio correction command signal for compensating for reduction in a fuel-air ratio in the combustor occurring during the combustion switching.
    • 用于燃气轮机发电厂的控制器包括压缩燃烧空气的压缩机; 水雾化冷却装置,其经由水雾化流量调节阀在压缩机内吸入的空气流喷射供给的水雾滴; 燃烧器,其将压缩的燃烧空气与燃料混合,从而燃烧燃料 - 空气混合物并在高温下产生燃烧气体并在运行期间进行燃烧切换; 使用燃烧气体驱动压缩机和发电机的涡轮机; 控制雾化水流量的水雾化流量调节阀; 以及压缩机入口内叶片,其控制在压缩机中吸入的空气的流量。 该控制器包括控制装置,该控制装置计算用于补偿在燃烧切换期间发生的燃烧室中的燃料空气比的降低的燃料空气比校正指令信号。
    • 2. 发明申请
    • Solar Thermal Gas Turbine System
    • 太阳能热力涡轮机系统
    • US20140013757A1
    • 2014-01-16
    • US14002286
    • 2011-03-07
    • Toru EguchiKazuhito KoyamaShigeo HatamiyaFumio TakahashiNaoyuki NagafuchiYukinori Katagiri
    • Toru EguchiKazuhito KoyamaShigeo HatamiyaFumio TakahashiNaoyuki NagafuchiYukinori Katagiri
    • F02C7/141F03G6/00
    • F02C7/141F02C1/05F02C3/30F02C7/18F03G6/005Y02E10/46
    • An object of the present invention is to provide a solar thermal gas turbine system enhanced in resistance to effects of disturbances including weather conditions in a gas turbine which sprays water into intake air of a compressor.A solar thermal gas turbine system according to an aspect of the present invention includes the following: a gas turbine 200 including a compressor for compressing air, a combustor for burning a fuel and the air compressed by the compressor, and a turbine driven by a combustion gas generated by the combustor; a heat collector 130 for collecting solar heat; a heat accumulator 140 for reserving high-pressure hot water generated from the solar heat collected by the heat collector; a water atomization device 170 for spraying the high-pressure hot water into the air taken in by the compressor; an intercooler 180 for mixing the high-pressure hot water into the compressed air extracted from the compressor, as cooling air for the turbine; and an evaporator 190 for supplying steam, a product obtained with the high-pressure hot water used as a heat source, to the combustor.
    • 本发明的目的在于提供一种能够抵抗干扰影响的太阳热能涡轮机系统,该系统包括将燃气轮机中的天气条件喷入到压缩机的进气中。 根据本发明的一个方面的太阳能热燃气涡轮机系统包括:包括用于压缩空气的压缩机的燃气轮机200,用于燃烧燃料的燃烧器和由压缩机压缩的空气以及由燃烧驱动的涡轮机 由燃烧器产生的气体; 用于收集太阳热的集热器130; 蓄热器140,用于储存由集热器收集的太阳热产生的高压热水; 用于将高压热水喷射到由压缩机吸入的空气中的水雾化装置170; 用于将高压热水与从压缩机抽出的压缩空气混合的中间冷却器180作为涡轮机的冷却空气; 以及蒸发器190,用于将作为热源的高压热水获得的产品供给到燃烧器。
    • 7. 发明授权
    • Reactor system
    • 反应器系统
    • US5053188A
    • 1991-10-01
    • US336423
    • 1989-04-11
    • Tsuyoshi NiinoYoshiyuki KataokaMatsuo MorikawaKazuhito Koyama
    • Tsuyoshi NiinoYoshiyuki KataokaMatsuo MorikawaKazuhito Koyama
    • G21D1/00G21C9/00G21C9/004G21C9/012G21D3/04
    • G21C9/012Y02E30/40
    • A reactor system of a boiling water type atomic power plant including a reactor pressure vessel, a primary containment vessel containing the reactor pressure vessel, a main turbine, a main steam piping extending through the primary containment vessel between the reactor pressure vessel and the main turbine, and inside and outside main steam isolation valves provided on the main steam piping inside and outside the primary containment vessel, respectively. A closure valve is provided on the main steam piping at a position near the primary containment vessel and is adapted to quickly close in less than 3 seconds upon a break accident of the main steam piping. A volume of the reactor pressure vessel allotted for accommodating steam is correspondingly enlarged to allow the closure valve to quickly close upon a break accident of the main steam piping.
    • 沸水型原子能发电厂的反应堆系统,其包括反应堆压力容器,容纳反应堆压力容器的初级容纳容器,主涡轮机,主反应堆压力容器和主涡轮机之间延伸穿过初级容纳容器的主蒸汽管道 ,以及分别设置在一次安全壳内外的主蒸汽管道上的内外主蒸汽隔离阀。 在主要蒸汽管道上的主要容纳容器附近的位置处设置有闭合阀,并且适于在主蒸汽管道的中断事故时在不到3秒钟内快速关闭。 分配用于容纳蒸汽的反应堆压力容器的体积相应地增大,以允许关闭阀在主蒸汽管道的断裂事故时快速关闭。
    • 10. 发明授权
    • Combustor and a fuel supply method for the combustor
    • 燃烧器和燃料供应方法
    • US08104284B2
    • 2012-01-31
    • US12108162
    • 2008-04-23
    • Keisuke MiuraHiroshi InoueKazuhito KoyamaTakeo Saito
    • Keisuke MiuraHiroshi InoueKazuhito KoyamaTakeo Saito
    • F02C1/00F02G3/00
    • F23D14/64F23R3/12F23R3/20F23R3/286
    • A combustor includes a chamber mixing and burning fuel and air and an air hole plate disposed on a wall surface of the chamber. The, air hole plate includes a plurality of rows disposed concentrically of a plurality of air holes jetting coaxial jets of fuel and air into the chamber. A first fuel nozzle and a second fuel nozzle are disposed near a fuel hole for jetting fuel into an air hole row on an inner peripheral side. The first fuel nozzle is structured to suppress turbulence of a surrounding air flow and the second fuel nozzle is structured to promote turbulence of a surrounding air flow. In accordance with the aspect of the present invention, good flame stability can be maintained while further reducing NOx in a combustor using coaxial jets.
    • 燃烧器包括混合并燃烧燃料和空气的空间以及设置在室的壁表面上的气孔板。 气孔板包括多个排列,其多个空气孔同时喷射同时喷射的燃料和空气进入腔室。 第一燃料喷嘴和第二燃料喷嘴设置在用于将燃料喷射到内周侧的空气孔排的燃料孔附近。 第一燃料喷嘴被构造成抑制周围气流的湍流,并且第二燃料喷嘴被构造成促进周围气流的紊流。 根据本发明的方面,可以在使用同轴射流进一步减少燃烧器中的NOx的同时保持良好的火焰稳定性。