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    • 73. 发明公开
    • 레이저 핵융합 시스템
    • 激光熔断器
    • KR1020130092363A
    • 2013-08-20
    • KR1020120112755
    • 2012-10-11
    • 박효상
    • 박효상
    • G21D7/00G21B1/00
    • Y02E30/14
    • PURPOSE: A laser nuclear fusion system protects the inside of a fusion reactor by using lead used for a capsule as a refrigerant. CONSTITUTION: A fuel capsule has a lens (2-1) and a funnel structure. The fuel capsule has a light condensing function. The funnel structure is manufactured by heavy metal. The heavy metal is gold or lead. The funnel structure is polished by rotating an auger structure on a grindstone. [Reference numerals] (2-1) Lens; (2-2) Fuel inlet; (2-3) Laser condensing funnel structure; (2-4) Ignition point; (2-5) Stiffener; (2-6) Funnel structures with high specific gravity such as lead or gold
    • 目的:激光核聚变系统通过使用用作胶囊的铅作为制冷剂来保护聚变反应器的内部。 构成:燃料胶囊具有透镜(2-1)和漏斗结构。 燃料胶囊具有聚光功能。 漏斗结构由重金属制成。 重金属是金或铅。 通过在磨石上旋转螺旋钻结构来抛光漏斗结构。 (2-1)镜头; (2-2)燃油进口; (2-3)激光冷凝漏斗结构; (2-4)点火点; (2-5)加强筋; (2-6)高比重的漏斗结构,如铅或金
    • 74. 发明授权
    • Thermophotovoltaic electrical power generator network
    • US11158430B2
    • 2021-10-26
    • US16305448
    • 2017-05-30
    • Brilliant Light Power, Inc.
    • Randell L. Mills
    • G21B3/00G21D7/00H04B3/54
    • A molten metal fuel to plasma to electricity power source and an element of a communication network that provides at least one of electrical and thermal power and a portal for transmission of information comprising (i) at least one reaction cell for the catalysis of atomic hydrogen to form hydrinos, (ii) a chemical fuel mixture comprising at least two components chosen from: a source of H2O catalyst or H2O catalyst; a source of atomic hydrogen or atomic hydrogen; reactants to form the source of H2O catalyst or H2O catalyst and a source of atomic hydrogen or atomic hydrogen; and a molten metal to cause the fuel to be highly conductive, (iii) a fuel injection system comprising an electromagnetic pump, (iv) at least one set of electrodes that confine the fuel and an electrical power source that provides repetitive short bursts of low-voltage, high-current electrical energy to initiate rapid kinetics of the hydrino reaction and an energy gain due to forming hydrinos to form a brilliant-light emitting plasma, (v) a product recovery system such as at least one of an electrode electromagnetic pump recovery system and a gravity recovery system, (vi) a source of H2O vapor supplied to the plasma (vii) a power converter capable of converting the high-power light output of the cell into electricity such as a concentrated solar power thermophotovoltaic device and a visible and infrared transparent window or a plurality of ultraviolet (UV) photovoltaic cells or a plurality of photoelectric cells, and a UV window, and (viii) a device capable of remote communication and capable of transmission of information wherein the device may be further capable of comprising a communication element of a plurality of communication elements of a plurality of power systems that are organized and controlled to form a communication network.
    • 75. 发明申请
    • H2O-BASED ELECTROCHEMICAL HYDROGEN-CATALYST POWER SYSTEM
    • US20210313606A1
    • 2021-10-07
    • US17332403
    • 2021-05-27
    • BRILLIANT LIGHT POWER, INC.
    • Randell L. MILLS
    • H01M8/06G21D7/00H01M8/18H01M8/22H01M4/96H01M8/0656G21B3/00H01M4/86H01M4/94C25B1/04H01M14/00
    • An electrochemical power system is provided that generates an electromotive force (EMF) from the catalytic reaction of hydrogen to lower energy (hydrino) states providing direct conversion of the energy released from the hydrino reaction into electricity, the system comprising at least two components chosen from: H2O catalyst or a source of H2O catalyst; atomic hydrogen or a source of atomic hydrogen; reactants to form the H2O catalyst or source of H2O catalyst and atomic hydrogen or source of atomic hydrogen; and one or more reactants to initiate the catalysis of atomic hydrogen. The electrochemical power system for forming hydrinos and electricity can further comprise a cathode compartment comprising a cathode, an anode compartment comprising an anode, optionally a salt bridge, reactants that constitute hydrino reactants during cell operation with separate electron flow and ion mass transport, and a source of hydrogen. Due to oxidation-reduction cell half reactions, the hydrino-producing reaction mixture is constituted with the migration of electrons through an external circuit and ion mass transport through a separate path such as the electrolyte to complete an electrical circuit. A power source and hydride reactor is further provided that powers a power system comprising (i) a reaction cell for the catalysis of atomic hydrogen to form hydrinos, (ii) a chemical fuel mixture comprising at least two components chosen from: a source of H2O catalyst or H2O catalyst; a source of atomic hydrogen or atomic hydrogen; reactants to form the source of H2O catalyst or H2O catalyst and a source of atomic hydrogen or atomic hydrogen; one or more reactants to initiate the catalysis of atomic hydrogen; and a support to enable the catalysis, (iii) thermal systems for reversing an exchange reaction to thermally regenerate the fuel from the reaction products, (iv) a heat sink that accepts the heat from the power-producing reactions, and (v) a power conversion system.