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    • 81. 发明申请
    • Gas-turbine power generating installation and method of operating the same
    • 燃气轮机发电设备及其运行方法
    • US20050091985A1
    • 2005-05-05
    • US10917285
    • 2004-08-13
    • Kazunori YamanakaShinya MarushimaHisashi HamatakeMutsumi Horitsugi
    • Kazunori YamanakaShinya MarushimaHisashi HamatakeMutsumi Horitsugi
    • F02C3/22F02C6/06F02C7/22
    • F02C7/22F02C3/22F02C6/06
    • A gas-turbine power generating installation capable of effectively utilizing gases produced in overage gas fields, etc. and a method of operating the installation are provided. The gas-turbine power generating installation is installed in the vicinity of an outrage gas field or an oil field. In the installation, air compressed by a compressor is introduced to a combustor for combustion after being mixed with fuel, a gas turbine is driven by generated combustion gas, and a power generator is driven by motive power obtained from a rotary shaft of the gas turbine. A boosting compressor is driven by the motive power obtained from the rotary shaft of the gas turbine, whereby natural gas or accompanying gas is boosted in pressure and supplied as fuel to the combustor. The gas turbine generates electric power by using natural gas produced in the outrage gas field or accompanying gas produced in the oil field, and the generated electric power is supplied to a consuming site.
    • 提供了一种能够有效利用超压气田中产生的气体的燃气轮机发电装置等,以及操作该装置的方法。 燃气轮机发电装置安装在暴风雨场或油田附近。 在安装中,由压缩机压缩的空气与燃料混合后被引入到燃烧室进行燃烧,燃气轮机由产生的燃烧气体驱动,发电机由从燃气轮机的旋转轴获得的动力驱动 。 增压压缩机由从燃气轮机的旋转轴获得的动力驱动,由此天然气或伴随气体被压力升压并作为燃料提供给燃烧器。 燃气轮机通过使用在气田中产生的天然气或在油田中产生的伴随气体来产生电力,并且将生成的电力供应到消耗部位。
    • 83. 发明授权
    • Gas turbine
    • 燃气轮机
    • US06393826B1
    • 2002-05-28
    • US09643751
    • 2000-08-23
    • Kazunori YamanakaSatoshi KondouMasami Noda
    • Kazunori YamanakaSatoshi KondouMasami Noda
    • F02C608
    • F02C7/18F02C3/10F02C7/143F02C7/185F02C7/2365
    • A gas turbine has a cooling air system supplying air for cooling a high temperature part of the gas turbine and a spray air system supplying air for spraying fuel into a combustor and is formed so that a part of high-pressure air compressed by a gas turbine compressor is used as air of the cooling air system and spray air system, wherein a heat exchanger and a boost compressor are arranged downstream of the outlet of compressed air of the gas turbine compressor, and the boost compressor is composed of a parallel connection of a compressor driven by the turbine shaft and ae compressor driven by a driven source other than the turbine shaft, and pressurized air from the boost compressor is used as air for the cooling air system and the spray air system.
    • 燃气轮机具有供给用于冷却燃气轮机的高温部分的空气的冷却空气系统和向燃烧器喷射燃料而供给空气的喷射空气系统,并且形成为使得由燃气轮机压缩的高压空气的一部分 压缩机用作冷却空气系统和喷雾空气系统的空气,其中热交换器和增压压缩机布置在燃气轮机压缩机的压缩空气出口的下游,并且增压压缩机由 由涡轮机轴驱动的压缩机和由涡轮机轴以外的驱动源驱动的压缩机,并且来自增压压缩机的加压空气用作冷却空气系统和喷雾空气系统的空气。
    • 85. 发明申请
    • THERMOELECTRIC CONVERSION MODULE AND METHOD FOR MAKING THE SAME
    • 热电转换模块及其制造方法
    • US20110146741A1
    • 2011-06-23
    • US12970937
    • 2010-12-17
    • Masaharu HidaKazunori Yamanaka
    • Masaharu HidaKazunori Yamanaka
    • H01L35/30H01L21/02
    • H01L35/32H01L35/08H01L35/34
    • A thermoelectric conversion module includes: p-type semiconductor blocks, each including a p-type thermoelectric conversion material, a first column portion and a first coupling portion that projects in a horizontal direction from an end of the first column portion; and n-type semiconductor blocks, each including an n-type thermoelectric conversion material, a second column portion and a second coupling portion that projects in a horizontal direction from an end of the second column portion, wherein the first coupling portions of the p-type semiconductor blocks are respectively coupled to the other ends of the second column portions of the n-type semiconductor blocks, and the second coupling portions of the n-type semiconductor blocks are respectively coupled to the other ends of the first column portions of the p-type semiconductor blocks, and the p-type semiconductor blocks and the n-type semiconductor blocks are alternately arranged and coupled to each other in series.
    • 热电转换模块包括:p型半导体块,每个包括p型热电转换材料,第一柱部分和从第一列部分的端部沿水平方向突出的第一耦合部分; 和n型半导体块,每个n型半导体块包括从第二列部分的端部沿水平方向突出的n型热电转换材料,第二列部分和第二耦合部分,其中p型晶体管的第一耦合部分, 分别连接到n型半导体块的第二列部分的另一端,并且n型半导体块的第二耦合部分分别耦合到p的第一列部分的另一端 型半导体块,p型半导体块和n型半导体块交替布置并串联耦合。
    • 87. 发明授权
    • Gas-turbine power generating installation and method of operating the same
    • 燃气轮机发电设备及其运行方法
    • US07472542B2
    • 2009-01-06
    • US11438435
    • 2006-05-23
    • Kazunori YamanakaShinya MarushimaHisashi HamatakeMutsumi Horitsugi
    • Kazunori YamanakaShinya MarushimaHisashi HamatakeMutsumi Horitsugi
    • F02C3/22
    • F02C7/22F02C3/22F02C6/06
    • A gas-turbine power generating installation capable of effectively utilizing gases produced in overage gas fields, etc. and a method of operating the installation are provided. The gas-turbine power generating installation is installed in the vicinity of an outrage gas field or an oil field. In the installation, air compressed by a compressor is introduced to a combustor for combustion after being mixed with fuel, a gas turbine is driven by generated combustion gas, and a power generator is driven by motive power obtained from a rotary shaft of the gas turbine. A boosting compressor is driven by the motive power obtained from the rotary shaft of the gas turbine, whereby natural gas or accompanying gas is boosted in pressure and supplied as fuel to the combustor. The gas turbine generates electric power by using natural gas produced in the outrage gas field or accompanying gas produced in the oil field, and the generated electric power is supplied to a consuming site.
    • 提供了一种能够有效利用超压气田中产生的气体的燃气轮机发电装置等,以及操作该装置的方法。 燃气轮机发电装置安装在暴风雨场或油田附近。 在安装中,由压缩机压缩的空气与燃料混合后被引入到燃烧室进行燃烧,燃气轮机由产生的燃烧气体驱动,发电机由从燃气轮机的旋转轴获得的动力驱动 。 增压压缩机由从燃气轮机的旋转轴获得的动力驱动,由此天然气或伴随气体被压力升压并作为燃料提供给燃烧器。 燃气轮机通过使用在气田中产生的天然气或在油田中产生的伴随气体来产生电力,并且将生成的电力供应到消耗部位。