会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 21. 发明授权
    • Gland sealing steam supply system for steam turbines
    • 蒸汽轮机密封蒸汽供应系统
    • US4793141A
    • 1988-12-27
    • US120097
    • 1987-11-13
    • Eiji YanaiTsuguo HashimotoKiyoshi TakeuchiTakashi AsaoYoshiki Noguchi
    • Eiji YanaiTsuguo HashimotoKiyoshi TakeuchiTakashi AsaoYoshiki Noguchi
    • F01D11/04F01D11/06F01K23/10F01K21/00
    • F01K23/106F01D11/04F01D11/06F05D2240/63
    • In order to recover the heat of the waste gas from a gas turbine, a waste heat recovery boiler is provided, which has a high-pressure steam generating portion consisting of an economizer, a high-pressure steam generator and a superheater, and a low-pressure steam generating portion consisting of an economizer, and a low-pressure steam generator. The steam from the high-pressure generating portion is supplied to the turbine through a high-pressure steam pipe, and the steam from the low-pressure steam generating portion to the same through a low-pressure steam pipe. The high-pressure gland sealing steam is supplied to a high-pressure side steam gland portion the steam turbine through a high-pressure steam extracton pipe branching from the high-pressure steam pipe, a steam pressure regulator adapted to regulate the steam pressure and introduce the excess steam to a condenser, and a high-pressure gland sealing steam pipe. The low-pressure gland sealing steam is supplied to a low-pressure side steam gland portion through a low-pressure steam extraction pipe branching from the low-pressure steam pipe, a reducing valve adapted to supply steam of a constant pressure due to a depressurization operation, and a low-pressure gland sealing steam pipe.
    • 为了从燃气轮机回收废气的热量,提供了一种废热回收锅炉,其具有由节能器,高压蒸汽发生器和过热器构成的高压蒸汽发生部,低 压缩蒸汽发生部分由节能器和低压蒸汽发生器组成。 来自高压发生部分的蒸汽通过高压蒸汽管道被供应到涡轮机,并且通过低压蒸汽管将蒸汽从低压蒸汽发生部分供应到它们。 高压密封蒸汽通过高压蒸汽管道分支的高压蒸汽提取管提供给蒸汽轮机的高压侧蒸汽压盖部分,适用于调节蒸汽压力并引入 过剩的蒸汽到冷凝器,以及一个高压密封的蒸汽管。 通过从低压蒸汽管分支的低压蒸汽抽出管将低压侧密封蒸汽供给到低压侧蒸汽密封部分,该减压阀适于由于减压而提供恒定压力的蒸汽 操作和低压密封蒸汽管。
    • 22. 发明授权
    • Gas turbine installation
    • 燃气轮机安装
    • US06973772B2
    • 2005-12-13
    • US10917286
    • 2004-08-13
    • Shigeo HatamiyaMasahiko YamagishiOsamu YokomizoYoshiki NoguchiMoriaki Tsukamoto
    • Shigeo HatamiyaMasahiko YamagishiOsamu YokomizoYoshiki NoguchiMoriaki Tsukamoto
    • F02C3/30F02C7/143F02C7/10
    • F02C3/305F02C3/30F02C7/08F02C7/10F02C7/1435
    • Disclosed is a gas turbine power generating system capable of achieving a high output power and a high power generating efficiency under conditions with a small amount of supplied water and less change in design of a gas turbine.A fine water droplet spraying apparatus (11) is disposed in a suction air chamber (22) on the upstream side of an air compressor (2), and a moisture adding apparatus (7) for adding moisture to high pressure air supplied from the compressor (2) is disposed. A regenerator (5) for heating the air to which moisture has been added by using gas turbine exhaust gas as a heat source is also provided. With this configuration, there can be obtain an effect of reducing a power for the compressor (2) and an effect of increasing the output power due to addition of moisture to air (20) for combustion. Further, since the used amount of fuel is reduced by adopting a regenerating cycle, the power generating efficiency is improved.
    • 公开了一种燃气轮机发电系统,其能够在少量供水的条件下和燃气轮机的设计变化较小的情况下实现高输出功率和高发电效率。 在空气压缩机(2)的上游侧的吸入空气室(22)中配置有微细的水滴喷射装置(11),以及将来自压缩机(2)供给的高压空气中的水分添加到水分添加装置 (2)。 还提供了一种用于通过使用燃气轮机废气作为热源来加热已经添加了水分的空气的再生器(5)。 通过这种结构,可以获得降低压缩机(2)的功率的效果,以及由于向空气(20)中添加水分而增加输出功率的效果,用于燃烧。 此外,由于通过采用再生循环来减少使用的燃料量,所以发电效率提高。
    • 23. 发明授权
    • Gas turbine installation
    • 燃气轮机安装
    • US06637185B2
    • 2003-10-28
    • US10384519
    • 2003-03-11
    • Shigeo HatamiyaMasahiko YamagishiOsamu YokomizoYoshiki NoguchiMoriaki Tsukamoto
    • Shigeo HatamiyaMasahiko YamagishiOsamu YokomizoYoshiki NoguchiMoriaki Tsukamoto
    • F02C330
    • F02C3/305F02C3/30F02C7/08F02C7/10F02C7/1435
    • Disclosed is a gas turbine power generating system capable of achieving a high output power and a high power generating efficiency under conditions with a small amount of supplied water and less change in design of a gas turbine. A fine water droplet spraying apparatus (11) is disposed in a suction air chamber (22) on the upstream side of an air compressor (2), and a moisture adding apparatus (7) for adding moisture to high pressure air supplied from the compressor (2) is included. A regenerator (5) for heating the air to which moisture has been added by using gas turbine exhaust gas as a heat source is also provided. With this configuration, there can be obtain an effect of reducing a power for the compressor (2) and an effect of increasing the output power due to addition of moisture to air (20) for combustion. Further, since the amount of fuel used is reduced by adopting a regenerating cycle, the power generating efficiency is improved.
    • 公开了一种燃气轮机发电系统,其能够在少量供水的条件下和燃气轮机的设计变化较小的情况下实现高输出功率和高发电效率。 在空气压缩机(2)的上游侧的吸入空气室(22)中配置有微细的水滴喷射装置(11),以及将来自压缩机(2)供给的高压空气中的水分添加到水分添加装置 (2)。 还提供了一种用于通过使用燃气轮机废气作为热源来加热已经添加了水分的空气的再生器(5)。 通过这种结构,可以获得降低压缩机(2)的功率的效果,以及由于向空气(20)中添加水分而增加输出功率的效果,用于燃烧。 此外,由于通过采用再生循环来减少所使用的燃料量,所以发电效率提高。
    • 26. 发明授权
    • Method of operating a combined plant
    • 组合工厂的操作方法
    • US5044152A
    • 1991-09-03
    • US348776
    • 1989-05-08
    • Shinichi HoizumiYoshiki NoguchiTadao ArakawaKazusada Hoshino
    • Shinichi HoizumiYoshiki NoguchiTadao ArakawaKazusada Hoshino
    • F01K23/10F02C9/16F02C9/20
    • F01K23/101F02C9/16Y02E20/16
    • A method of operating a combined plant which is composed of a gas turbine system including a compressor into which air is introduced through an inlet guide vane, a combustor in which a fuel is burnt with the air compressed by the compressor, and a turbine into which the combustion gas is introduced to generate an output power, a waste-heat recovery boiler which generates steam by the heat possessed by the combustion exhaust gas from the gas turbine system and a steam turbine driven by the steam generated by the waste heat recovery boiler. The opening of the inlet guide vane of the gas turbine system is controlled in accordance with the state of the waste-heat recovery boiler or the steam turbine, such as the temperature of the steam introduced into the steam turbine, thermal stress generated in the steam turbine, temperature of a metallic part of the steam turbine and so forth.
    • 一种操作组合设备的方法,该组合设备由包括压缩机的燃气轮机系统组成,空气通过入口导向叶片引入空气中,燃烧器中的燃料被压缩机压缩的空气燃烧, 引入燃烧气体以产生输出功率,废热回收锅炉,其通过来自燃气轮机系统的燃烧废气所具有的热量产生蒸汽,以及由废热回收锅炉产生的蒸汽驱动的蒸汽轮机。 燃气轮机系统的入口引导叶片的开口根据废热回收锅炉或蒸汽轮机的状态进行控制,例如引入蒸汽轮机的蒸汽的温度,蒸汽中产生的热应力 涡轮机,蒸汽轮机的金属部件的温度等。
    • 30. 发明授权
    • Fuel cell power plant
    • 燃料电池发电厂
    • US4622275A
    • 1986-11-11
    • US760872
    • 1985-07-31
    • Yoshiki NoguchiTadao ArakawaNobuo NagasakiShigehisa SugitaMasato Takeuchi
    • Yoshiki NoguchiTadao ArakawaNobuo NagasakiShigehisa SugitaMasato Takeuchi
    • H01M8/04F01K3/18F01K23/06H01M8/06
    • H01M8/0612F01K23/06F01K3/188
    • A fuel cell power plant comprising a fuel cell employing a molten carbonate as an electrolyte, a reformer for reforming fuel into a reactive gas to be supplied into the anode of the cell, an expansion turbine connected to a compressor, a combustor for burning a gas exhausted from the anode and introducing the combustion gas into the cathode of the fuel cell along with a gas compressed by the compressor, and a waste heat recovery system. The power plant is characterized by the provision of another combustor on the passage through which cathode exhaust gas is sent from the cathode to the turbine and a passage for leading a part of the anode exhaust gas to the combustor, whereby unburned gas, included in the anode exhaust gas, is burned with the cathode exhaust gas supplied as oxygen source so that the temperature of the turbine driving gas is raised, as a result, the overall thermal efficiency of the power plant increases.
    • 一种燃料电池发电厂,包括使用熔融碳酸盐作为电解质的燃料电池,用于将燃料重整成供应到电池的阳极的反应性气体的重整器,连接到压缩机的膨胀涡轮机,燃烧气体的燃烧器 从阳极排出并将燃烧气体与由压缩机压缩的气体一起引入燃料电池的阴极以及废热回收系统。 发电厂的特征在于在阴极排气从阴极发送到涡轮的通道上设置另一个燃烧器,以及用于将阳极废气的一部分引导到燃烧器的通道,由此包括在燃烧器中的未燃烧气体 阳极废气以作为氧源供给的阴极废气燃烧,使得涡轮驱动气体的温度上升,结果,发电厂的整体热效率增加。