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    • 121. 发明专利
    • Induction heating melting power generation
    • 感应加热熔炼发电
    • JP2012241710A
    • 2012-12-10
    • JP2011134589
    • 2011-05-23
    • Tomio Miyaura富雄 宮浦
    • MIYAURA TOMIO
    • F02C1/10F03G7/06F22B1/28H05B6/10H05B6/12
    • PROBLEM TO BE SOLVED: To provide a safe and stable power generation method which generates electricity without using fuel like thermal power generation, does not generate carbon dioxide, and does not bring about radioactive contamination like nuclear power generation in consideration of clean global environment.SOLUTION: At first, tin, other metal, a mineral, or the like is melted by a large-sized IH cooker 2 by use of external electricity, a pressure container 4 for generating hot water or steam is installed therein, and a dynamo 6 is rotated by use of the generated steam to generate electricity. When power generation starts, external power is not required, the system is run by the generated electricity, and the continuous power generation is attained.
    • 要解决的问题:为了提供一种安全稳定的发电方式,在不使用燃料如火力发电的情况下发电,不产生二氧化碳,考虑到清洁的全球化,不会产生像核能发电等放射性污染 环境。

      解决方案:首先,通过使用外部电力,通过大型IH蒸煮器2将锡,其他金属,矿物等熔化,在其中安装用于产生热水或蒸汽的压力容器4, 发电机6通过使用产生的蒸汽旋转以发电。 当发电开始时,不需要外部电力,系统由发电运行,从而实现连续发电。 版权所有(C)2013,JPO&INPIT

    • 123. 发明专利
    • External combustion type closed cycle thermal engine
    • 外部燃烧型封闭式循环热发动机
    • JP2010164019A
    • 2010-07-29
    • JP2009008570
    • 2009-01-19
    • Yokohama Seiki Kk横浜製機株式会社
    • KAIHO TOSHIMITSUTSURUNO SHOZOSEKINE SOHEIKUSUNOKI KENJIRO
    • F02G1/05F02C1/10F02G1/043
    • PROBLEM TO BE SOLVED: To provide an external combustion type closed cycle thermal engine which can be designed and manufactured under various conditions without relating the capacity of a heater or a cooler to the efficiency of the engine.
      SOLUTION: The external combustion type closed cycle thermal engine includes a sealed gas chamber and the heater and the cooler, a flow path for conducting the gas chamber to the inlet and outlet sides of the heater, a flow path for conducting the gas chamber to the inlet and outlet sides of the cooler, on-off valves provided in the flow paths on the inlet and outlet sides, respectively, and a means for moving operating gas. The on-off valves change over the operating gas between the heater and the cooler to drive an acting body.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种可以在各种条件下设计和制造的外燃式闭式循环热力发动机,而不需要将加热器或冷却器的容量与发动机的效率相关联。 解决方案:外燃式封闭循环热力发动机包括密封的气室和加热器和冷却器,用于将气室传导到加热器的入口侧和出口侧的流路,用于导入气体的流路 分别设置在入口侧和出口侧的流路中的冷却器的入口侧和出口侧以及用于移动工作气体的装置。 开关阀切换加热器和冷却器之间的工作气体以驱动作用体。 版权所有(C)2010,JPO&INPIT
    • 124. 发明专利
    • Steam power generator and plant
    • 蒸汽发电机和工厂
    • JP2010116823A
    • 2010-05-27
    • JP2008289983
    • 2008-11-12
    • Kobe Steel Ltd株式会社神戸製鋼所
    • MATSUKUMA MASAKI
    • F01D15/08F01D15/10F02C1/10
    • PROBLEM TO BE SOLVED: To provide a steam power generator of high energy efficiency.
      SOLUTION: The steam power generator 1 includes a steam expander 4 converting expansion power of high pressure steam to rotary power, a steam compressor 6 driven by rotary power of the steam expander 4, compressing low pressure steam and discharging the same to a suction channel of the steam expander, and a generator 5 driven by rotary power of the steam expander 4 and generating electric power. Low pressure steam provided by decompressing drain of a steam trap 7 of a demand facility 3 secondarily using steam discharged from the steam expander 4 at a flash tank 8 is supplied to the steam compressor 6.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供高能效的蒸汽发电机。 蒸汽发电机1包括将高压蒸汽的膨胀功率转换为旋转动力的蒸汽膨胀器4,由蒸汽膨胀机4的旋转动力驱动的蒸汽压缩机6,压缩低压蒸汽并将其排出到 蒸汽膨胀机的吸入通道,以及由蒸汽膨胀机4的旋转动力驱动并产生电力的发电机5。 通过使用从蒸汽膨胀机4在闪蒸罐8排出的蒸汽二次地对需要设备3的蒸汽疏水阀7的排水进行减压而提供的低压蒸汽供给到蒸汽压缩机6.(C)2010,JPO&INPIT
    • 127. 发明专利
    • Nuclear power generation system adaptable to load fluctuations
    • 核发电系统适应负载波动
    • JP2007218604A
    • 2007-08-30
    • JP2006036358
    • 2006-02-14
    • Japan Atomic Energy Agency独立行政法人 日本原子力研究開発機構
    • OHASHI KAZUTAKAKUNITOMI KAZUHIKOXING YAN
    • G21D9/00C01B3/02F01K25/00F02C1/05F02C1/10F02C3/22
    • PROBLEM TO BE SOLVED: To realize a nuclear power generation system which has superior load following characteristics and high economical efficiency as requirements for a peak power source, because it is desirable to promote the use of the system even as a peak power source for adapting to load fluctuation, in order to expand the utilization range of nuclear power and reduce greenhouse gas emission, thereby though nuclear power generation at present, used mainly as a baseload power source, is not harnessed as a peak power source, the so-called, adapting to daily and seasonal load fluctuations.
      SOLUTION: A nuclear power generation plant system which can be harnessed as a peak power source is constituted, by composing the nuclear power generation system built by combining a power/hydrogen cogeneration plant where a thermochemical-method hydrogen production installation, through the medium of a direct-cycle helium gas turbine power generation installation and an intermediate heat exchanger is connected to a high-temperature gas-cooled reactor, with a hydrogen-burning turbine power generation plant equipped with a storage facility for the produced hydrogen and oxygen.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了实现具有优异的负载跟随特性和高经济效率的核电发电系统作为峰值电源的要求,因为即使作为峰值功率源也希望促进系统的使用 为了适应负荷波动,为了扩大核电的利用范围,减少温室气体排放,由于目前主要用作基极电源的核能发电并不被用作峰值电源, 称为适应日常和季节负荷波动。 解决方案:通过组合通过组合热化学方法氢生产装置​​的电力/氢热电联产厂构建的核能发电系统构成可以利用作为峰值电源的核发电厂系统,通过 具有直接循环氦燃气轮机发电装置的介质和中间热交换器连接到高温气冷反应堆,其具有配备有用于产生的氢气和氧气的储存设备的氢燃烧涡轮机发电厂。 版权所有(C)2007,JPO&INPIT
    • 128. 发明专利
    • Fluidized bed combined power generation system
    • 流化床组合发电系统
    • JP2006266259A
    • 2006-10-05
    • JP2006033591
    • 2006-02-10
    • Toshiba Corp株式会社東芝
    • GOTO KOICHI
    • F02C3/28C10J3/02C10J3/46F01K23/10F02C1/10F02C6/18
    • Y02E20/16Y02E20/18
    • PROBLEM TO BE SOLVED: To provide a fluidized bed combined power generation system prevented from the degradation of generating performance by preventing the corrosion of structural equipment such as an expander of a gas turbine and the deposition of soot and dust thereon, eliminating the need for replacing components and having improved generating efficiency by reducing the quantity of heat to be exhausted to the outside of a system. SOLUTION: The fluidized bed combined power generation system comprises a combination of a fluidized bed combustion boiler 1, the gas turbine using heat generated in the fluidized bed combustion boiler 1 as a heat source, a steam turbine 5 using at least one of heat exhausted from the gas turbine and the heat generated in the fluidized bed combustion boiler, as a heat source, and a compressor 3 for compressing at least operating fluid in the gas turbine, to generate power with the gas turbine and the steam turbine 5. The operating fluid in the expander 2 of the gas turbine is gas 24 only which is heated with combustion exhaust gas 30 from the fluidized bed combustion boiler 1 by a gas heater 11, without containing the combustion exhaust gas 30 from the fluidized bed combustion boiler 1. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了防止流化床组合发电系统通过防止诸如燃气轮机的膨胀机等结构设备的腐蚀和其上的灰尘和灰尘的沉积来防止发电性能的劣化,消除 需要更换部件并且通过减少要耗尽到系统外部的热量来提高发电效率。 解决方案:流化床组合发电系统包括流化床燃烧锅炉1,使用在作为热源的流化床燃烧锅炉1中产生的热量的燃气轮机的组合,蒸汽轮机5,其使用以下各项中的至少一种: 从燃气轮机排出的热量以及在流化床燃烧锅炉中产生的热量作为热源,以及用于压缩至少燃气轮机中的工作流体的压缩机3,以便与燃气轮机和汽轮机5产生动力。 燃气轮机的膨胀机2中的工作流体仅仅是气体24,其仅由来自流化床燃烧锅炉1的燃烧废气30通过气体加热器11加热,而不包含来自流化床燃烧锅炉1的燃烧废气30 。版权所有(C)2007,JPO&INPIT