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    • 61. 发明授权
    • Gas expander based power plant system
    • 基于气体膨胀机的发电厂系统
    • US5003782A
    • 1991-04-02
    • US549090
    • 1990-07-06
    • Zoran Kucerija
    • Zoran Kucerija
    • F01D11/04F02C1/00F02C3/32F17D1/075
    • F02C1/00F01D11/04F02C3/32F17D1/075F05D2260/601
    • A gas expander based power plant system for generating electricity at a pressure reducing station of a gas transmission pipeline is disclosed where gas at high pressure is being delivered to the distribution or gas utilization system; by means of pressure reduction with a gas expander system capable of accommodating fluctuating high pressure gas conditions and maintaining desired lower pressure gas conditions, which comprise the steps of generating steam, condensing the steam in a heat exchanger and using the heat of condensation of the steam to heat a portion of high pressure gas in a controlled manner to maintain the required gas conditions of the lower pressure line throughout the range of operation, and passing the high pressure gas through a gas expander to drive an electrical generator. In one embodiment of the system, a portion of the gas fuel supplied to a steam generator is utilized as a motive gas supply for a gas ejector which creates a vacuum in the shaft sealing chamber of the gas expander, evacuates the leakage gas thereby preventing the release of gas to the surrounding, and combines evacuated gas with remainder of gas fuel for combustion in a steam generator.
    • 公开了一种用于在气体输送管道的减压站发电的基于气体膨胀机的发电厂系统,其中高压气体被输送到分配或气体利用系统; 通过使用能够适应波动的高压气体条件并维持所需的低压气体条件的气体膨胀机系统的压力降低,其包括产生蒸汽的步骤,在热交换器中冷凝蒸汽并使用蒸汽的冷凝热 以受控的方式加热一部分高压气体,以在整个操作范围内保持低压管线的所需气体条件,并使高压气体通过气体膨胀器以驱动发电机。 在系统的一个实施例中,供应给蒸汽发生器的气体燃料的一部分被用作气体喷射器的运动气体供应器,其在气体膨胀器的轴密封室中产生真空,排出泄漏气体,从而防止 将气体释放到周围,并将抽真空气体与余下的燃气合并在蒸汽发生器中燃烧。
    • 65. 发明专利
    • GAS FEEDER
    • JPS63319041A
    • 1988-12-27
    • JP15421587
    • 1987-06-19
    • KOBE STEEL LTD
    • YOSHIMURA SEIJI
    • F17D1/075B01J4/00F17C5/06
    • PURPOSE:To make installation space small by providing a combination machine of compression and expansion, an oil recovery-separation means and a gas holder, and forming a flow path for packing which reaches the gas holder via the oil recovery-separation means from this combination machine. CONSTITUTION:A flow path 14 for packing which reaches a gas holder 7 via a first oil recovery unit 2a from a combination machine 1 is formed by opening on-off valves 8, 9, 10 and closing on-off valves 11, 12, 13. A heat exchange means 6 is operated as a cooler by opening an on-off valve 4 and closing an on-off valve 5 and on the other hand, a flow path for discharge which joints to the flow path 14 for packing via the combination machine 1 and a second oil recovery unit 2b from the gas holder 7 is formed by opening the on-off valves 11, 12, 13 and closing the on-off valves 8, 9, 10. Furthermore the heat exchange means 6 can be operated as a heater by opening the on-off valve 5 and closing the on-off valve 4.
    • 66. 发明专利
    • SUPERCONDUCTIVE DISTRIBUTING LINE
    • JPS63254611A
    • 1988-10-21
    • JP8916587
    • 1987-04-10
    • SUMITOMO ELECTRIC INDUSTRIES
    • SUZAWA CHIZURU
    • H01B12/16F17D1/075
    • PURPOSE:To make a coolant compression pump and the like unnecessary and to simplify the superconductive wiring line by furnishing a superconductive wire in a coolant transferring tube which links a coolant container and superconductive appliances. CONSTITUTION:A coolant transferring tube 2 is composed into a double tube of an armoring tube 4 and a coolant jar 5 to be an inner tube, and the coolant jar 5 is held concetric to the armoring tube 4 by supports 7 through a vacuum adiabatic layer between the jar 5 and the tube 4. Inside the coolant jar 5, liquid nitrogen (h) pumped from a cold evaporator 1 is filled, and moreover, plural superconductive wires 8 are arranged in the condition surrounded by the liquid nitrogen (h). The superconductive wires 8 have a composition shown as the formula Aa Bb Cc, where A is one element selected from Ia, IIa, and IIIa families in the periodic table, B is one element selected from Ib, IIb, and IIIb families, and C is oxygen or fluorine.