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    • 4. 发明申请
    • Steam Engine
    • 蒸汽机
    • US20080307790A1
    • 2008-12-18
    • US12228414
    • 2008-08-11
    • Shinichi YatsuzukaShuzo OdaYasumasa HagiwaraToshiyuki MorishitaKatsuya Komaki
    • Shinichi YatsuzukaShuzo OdaYasumasa HagiwaraToshiyuki MorishitaKatsuya Komaki
    • F01K23/06
    • F01K27/005
    • A steam engine has a pipe shaped fluid container, a heating and cooling devices respectively provided at a heating and cooling portions of the fluid container, and an output device connected to the fluid container, so that the output device is operated by the fluid pressure change in the fluid container, to generate an electric power. In such a steam engine, an inner radius “r1” of the cooling portion is made to almost equal to a depth “δ1” of the thermal penetration, which is calculated by the following formula (1); δ 1 = 2  a 1 ω ( 1 ) wherein, “a1” is a heat diffusivity of the working fluid at its low pressure, and “ω” is an angular frequency of the movement of the working fluid.
    • 蒸汽发动机具有管状流体容器,分别设置在流体容器的加热和冷却部分处的加热和冷却装置以及连接到流体容器的输出装置,使得输出装置由流体压力变化 在流体容器中产生电力。 在这种蒸汽机中,冷却部分的内半径“r1”几乎等于热穿透深度“delta1”,其通过下式(1)计算: delta > 1 = 2 < 1 > “a1”是工作流体在其低压下的热扩散率,“ω”是工作流体的运动的角频率。
        • 5. 发明授权
        • Steam engine
        • 蒸汽机
        • US07424802B2
        • 2008-09-16
        • US11132653
        • 2005-05-19
        • Shinichi YatsuzukaShuzo OdaYasumasa HagiwaraToshiyuki MorishitaKatsuya Komaki
        • Shinichi YatsuzukaShuzo OdaYasumasa HagiwaraToshiyuki MorishitaKatsuya Komaki
        • F01B1/00F01K13/00
        • F01K27/005
        • A steam engine has a pipe shaped fluid container, a heating and cooling devices respectively provided at a heating and cooling portions of the fluid container, and an output device connected to the fluid container, so that the output device is operated by the fluid pressure change in the fluid container, to generate an electric power. In such a steam engine, an inner radius “r1” of the cooling portion is made to almost equal to a depth “δ1” of thermal penetration, which is calculated by the following formula (1); δ 1 = 2 ⁢ a 1 ω ( 1 ) wherein, “a1” is a heat diffusivity of the working fluid at its low pressure, and “ω” is an angular frequency of the movement of the working fluid.
        • 蒸汽发动机具有管状流体容器,分别设置在流体容器的加热和冷却部分处的加热和冷却装置以及连接到流体容器的输出装置,使得输出装置由流体压力变化 在流体容器中产生电力。 在这种蒸汽机中,冷却部分的内半径“r 1”几乎等于通过下式(1)计算的热穿透深度“delta1”; delta 1 = 2 1 omega 其中, “a 1”是工作流体在其低压下的热扩散率,“ω”是工作流体的运动的角频率。
            • 6. 发明申请
            • Steam engine
            • 蒸汽机
            • US20050257524A1
            • 2005-11-24
            • US11132653
            • 2005-05-19
            • Shinichi YatsuzukaShuzo OdaYasumasa HagiwaraToshiyuki MorishitaKatsuya Komaki
            • Shinichi YatsuzukaShuzo OdaYasumasa HagiwaraToshiyuki MorishitaKatsuya Komaki
            • F01K1/00F01K23/04F01K27/00
            • F01K27/005
            • A steam engine has a pipe shaped fluid container, a heating and cooling devices respectively provided at a heating and cooling portions of the fluid container, and an output device connected to the fluid container, so that the output device is operated by the fluid pressure change in the fluid container, to generate an electric power. In such a steam engine, an inner radius “r1” of the cooling portion is made to almost equal to a depth “δ1” of thermal penetration, which is calculated by the following formula (1); δ 1 = 2 ⁢ a 1 ω ( 1 ) wherein, “a1” is a heat diffusivity of the working fluid at its low pressure, and “ω” is an angular frequency of the movement of the working fluid.
            • 蒸汽发动机具有管状流体容器,分别设置在流体容器的加热和冷却部分处的加热和冷却装置以及连接到流体容器的输出装置,使得输出装置由流体压力变化 在流体容器中产生电力。 在这种蒸汽机中,冷却部分的内半径“r 1”几乎等于通过下式(1)计算的热穿透深度“delta1”; delta 1 = 2 1 omega 其中, “a 1”是工作流体在其低压下的热扩散率,“ω”是工作流体的运动的角频率。
                • 7. 发明授权
                • Liquid pump and Rankine cycle apparatus
                • 液体泵和兰金循环仪
                • US07503176B2
                • 2009-03-17
                • US11070031
                • 2005-03-01
                • Shinichi YatsuzukaShuzo OdaKatsuya KomakiYasumasa Hagiwara
                • Shinichi YatsuzukaShuzo OdaKatsuya KomakiYasumasa Hagiwara
                • F01K1/00
                • F04F1/04F01K9/02
                • A liquid pump for circulating working fluid (water) in a Rankine cycle comprises a U-shaped fluid vessel having a bending pipe portion and a pair of straight pipe portions, wherein a heating device and a cooling device are provided at one of the straight pipe portions for heating and cooling the water in the fluid vessel. The liquid pump further has a discharge pipe portion and an inlet pipe portion, and check valves are respectively provided in the discharge and inlet pipe portions. The water is vaporized by a heating operation of the heating device to increase pressure of the working fluid in the pump, so that the working fluid is discharged. The vaporized working fluid is then cooled down by the cooling device to decrease the pressure of the working fluid in the pump, so that the working fluid is sucked into the pump.
                • 用于在兰金循环中循环工作流体(水)的液体泵包括具有弯曲管部分和一对直管部分的U形流体容器,其中加热装置和冷却装置设置在直管 用于加热和冷却流体容器中的水的部分。 液体泵还具有排出管部分和入口管部分,并且止回阀分别设置在排出和入口管部分中。 通过加热装置的加热操作使水蒸发,以增加泵中的工作流体的压力,从而排出工作流体。 蒸发的工作流体然后通过冷却装置冷却,以降低泵中的工作流体的压力,使得工作流体被吸入泵中。
                • 8. 发明申请
                • Liquid pump and Rankine cycle apparatus
                • 液体泵和兰金循环仪
                • US20050193735A1
                • 2005-09-08
                • US11070031
                • 2005-03-01
                • Shinichi YatsuzukaShuzo OdaKatsuya KomakiYasumasa Hagiwara
                • Shinichi YatsuzukaShuzo OdaKatsuya KomakiYasumasa Hagiwara
                • F01K9/02F01K13/02F04F1/00F04F1/04F04F1/06
                • F04F1/04F01K9/02
                • A liquid pump for circulating working fluid (water) in a Rankine cycle comprises a U-shaped fluid vessel having a bending pipe portion and a pair of straight pipe portions, wherein a heating device and a cooling device are provided at one of the straight pipe portions for heating and cooling the water in the fluid vessel. The liquid pump further has a discharge pipe portion and an inlet pipe portion, and check valves are respectively provided in the discharge and inlet pipe portions. The water is vaporized by a heating operation of the heating device to increase pressure of the working fluid in the pump, so that the working fluid is discharged. The vaporized working fluid is then cooled down by the cooling device to decrease the pressure of the working fluid in the pump, so that the working fluid is sucked into the pump.
                • 用于在兰金循环中循环工作流体(水)的液体泵包括具有弯曲管部分和一对直管部分的U形流体容器,其中加热装置和冷却装置设置在直管 用于加热和冷却流体容器中的水的部分。 液体泵还具有排出管部分和入口管部分,并且止回阀分别设置在排出和入口管部分中。 通过加热装置的加热操作使水蒸发,以增加泵中的工作流体的压力,从而排出工作流体。 蒸发的工作流体然后通过冷却装置冷却,以降低泵中的工作流体的压力,使得工作流体被吸入泵中。
                • 9. 发明授权
                • Fluid pump and Rankine cycle system
                • 流体泵和兰金循环系统
                • US07574863B2
                • 2009-08-18
                • US11507832
                • 2006-08-22
                • Shinichi YatsuzukaShuzo OdaKatsuya KomakiYasumasa Hagiwara
                • Shinichi YatsuzukaShuzo OdaKatsuya KomakiYasumasa Hagiwara
                • F01K1/00
                • F01K27/005F01K13/006
                • A fluid pump enabling circulation of a working fluid in a Rankine cycle system etc. without utilizing electrical energy and able to be realized at a low cost, provided with a water pump for pumping up working fluid (water) from a steam condenser of the Rankine cycle system and feeding it to a boiler, a fluid vessel, a heater heating and vaporizing working fluid in the vessel, and a cooler cooling and liquefying the steam obtained by vaporization at the heater. Further, the fluid vessel is provided with a vibrator storing expansion energy by the expansion pressure of the steam heated by the heater. When the cooler causes the steam to condense and the pressure falls, the energy stored in the vibrator is used to feed working fluid to the heater 12 where the working fluid is then heated.
                • 一种能够在朗肯循环系统等中循环工作流体的流体泵,而不需要利用电能并且能够以低成本实现,其具有用于从兰金的蒸汽冷凝器中泵出工作流体(水)的水泵 将其送入容器内的锅炉,流体容器,加热器加热和蒸发工作流体,以及冷却和液化在加热器处蒸发得到的蒸汽的冷却器。 此外,流体容器设置有通过由加热器加热的蒸汽的膨胀压力而存储膨胀能量的振动器。 当冷却器使蒸汽冷凝并且压力下降时,存储在振动器中的能量用于将工作流体供给到加热器12,在那里工作流体然后被加热。
                • 10. 发明申请
                • Fluid pump and Rankine cycle system
                • 流体泵和兰金循环系统
                • US20070044473A1
                • 2007-03-01
                • US11507832
                • 2006-08-22
                • Shinichi YatsuzukaShuzo OdaKatsuya KomakiYasumasa Hagiwara
                • Shinichi YatsuzukaShuzo OdaKatsuya KomakiYasumasa Hagiwara
                • F01K13/00F01K23/06
                • F01K27/005F01K13/006
                • A fluid pump enabling circulation of a working fluid in a Rankine cycle system etc. without utilizing electrical energy and able to be realized at a low cost, provided with a water pump for pumping up working fluid (water) from a steam condenser of the Rankine cycle system and feeding it to a boiler, a fluid vessel, a heater heating and vaporizing working fluid in the vessel, and a cooler cooling and liquefying the steam obtained by vaporization at the heater. Further, the fluid vessel is provided with a vibrator storing expansion energy by the expansion pressure of the steam heated by the heater. When the cooler causes the steam to condense and the pressure falls, the energy stored in the vibrator is used to feed working fluid to the heater 12 where the working fluid is then heated.
                • 一种能够在朗肯循环系统等中循环工作流体的流体泵,而不需要利用电能并且能够以低成本实现,其具有用于从兰金的蒸汽冷凝器中泵出工作流体(水)的水泵 将其送入容器内的锅炉,流体容器,加热器加热和蒸发工作流体,以及冷却和液化在加热器处蒸发得到的蒸汽的冷却器。 此外,流体容器设置有通过由加热器加热的蒸汽的膨胀压力而存储膨胀能量的振动器。 当冷却器使蒸汽冷凝并且压力下降时,存储在振动器中的能量用于将工作流体供给到加热器12,在那里工作流体然后被加热。