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    • 47. 发明专利
    • FUSION REACTOR ENGINE AND MECHANICAL SYSTEM USING IT
    • JPH08211191A
    • 1996-08-20
    • JP4770695
    • 1995-01-31
    • HATANAKA TAKESHI
    • HATANAKA TAKESHI
    • G21D7/00G21B1/00
    • PURPOSE: To generate mechanical power at low cost based on fusion energy exceeding given electric energy by sealing a nuclear reaction medium at predetermined pressure in a nuclear reaction room and work room and driving a piston with the power gas generated by the periodical nuclear reaction in the nuclear reaction room. CONSTITUTION: In nuclear reaction rooms 26, 28 and a work room 14, after exhausting to vacuum and activating cathode hydrogen occlusion metal plate 36a, 40a, deuterium is sealed as a nuclear reaction medium at predetermined pressure. When electrodes 34, 36 and 38, 40 are periodically supplied with predetermined discharge pulses, large current discharge is generated between electrodes 34 and 36 and the nuclear reaction medium in the nuclear reaction room 26 is ionized to generate plasma by arc discharge leading to super high temperature. At this moment, fusion reaction is generated in the plasma plate in the cathode and a new element is produced in the plasma. Simultaneously in the nuclear reaction room, hydrogen fusion is caused to produce helium and simultaneously, high-temperature high-pressure gas is generated by fusion energy, which gas rotates a rotary piston 18.
    • 49. 发明专利
    • DUAL TANK TYPE FAST BREEDER
    • JPH0381698A
    • 1991-04-08
    • JP21599689
    • 1989-08-24
    • TOSHIBA CORP
    • KOBAYASHI TAKASHI
    • G21C1/02G21D7/00
    • PURPOSE:To lead electricity directly out of a reactor container by incorporating a chemical power generator formed of a ceramic material which generates an electromotive force with the temperature difference of a reactor core cooling material in a secondary reactor container. CONSTITUTION:A reactor core 2 is supported in a primary reactor container 1 by a support mechanism 3. Plural intermediate heat exchangers 6 are suspended from a roof slab 4 at the periphery of the reactor core 2 and its upper mechanism 5. The chemical power generator 12 is incorporated between the primary reactor container 1 and secondary reactor container 7. In the genera tor 12, high-temperature sodium which is returned into the container 7 from the heat exchangers 6 flows outside a beta-alumina ceramic internal tank 15 and low-temperature sodium which is cooled in a pipe 18 is present in the internal tank 15. At this time, elecrtromotive forces are generated inside and outside the beta-alumina ceramic and led out of electrodes 24 and 25 to supply electric power to a load device 23.