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    • 2. 发明申请
    • ALTERNATE PASSIVE SPENT FUEL POOL COOLING SYSTEMS AND METHODS
    • 替代无源燃油池冷却系统和方法
    • WO2014137447A2
    • 2014-09-12
    • PCT/US2013/076012
    • 2013-12-18
    • WESTINGHOUSE ELECTRIC COMPANY LLC
    • DEDERER, Jeffrey T.BROWN, William L.VEREB, Frank
    • G21C15/18G21C19/07G21C19/40G21D3/06G21Y2002/207Y02E30/40
    • The present invention relates to passive cooling systems and methods for cooling a spent fuel pool in a nuclear power plant in the absence of onsite and offsite power, e.g., in a station blackout event. The systems include a gap formed along the periphery of the spent fuel pool, a heat sink, one or more thermal conductive members, a water supply system for delivering water to at least partially fill the gap and conduct heat generated from the spent fuel pool through the gap to at least one thermal conductive member for transporting heat to the heat sink, and a thermal switch mechanism for activating and deactivating the water supply system. In particular, the passive spent fuel pool cooling systems and methods of the invention are useful when the active spent fuel pool cooling system is unavailable or inoperable.
    • 本发明涉及被动冷却系统和方法,用于在不存在现场和非现场电力的情况下(例如在停电事件中)冷却核电站中的乏燃料池。 该系统包括沿着乏燃料池的周边形成的间隙,散热器,一个或多个导热构件,用于输送水以至少部分地填充间隙并将由乏燃料池产生的热量通过的供水系统通过 与至少一个用于将热量传输到散热器的导热构件的间隙,以及用于启动和停用供水系统的热开关机构。 具体而言,当活性乏燃料池冷却系统不可用或不可操作时,本发明的被动式乏燃料池冷却系统和方法是有用的。
    • 5. 发明申请
    • SYSTEMS AND METHODS FOR GENERATING POWER EMPLOYING VES AIR SUPPLY STORED ENERGY
    • 用于生产电力的系统和方法空气供应能源
    • WO2014123630A1
    • 2014-08-14
    • PCT/US2013/076360
    • 2013-12-19
    • WESTINGHOUSE ELECTRIC COMPANY LLC
    • DEDERER, Jeffrey T.REPP, David
    • G21C9/00
    • G21D1/02F05D2220/62G21D1/00G21D3/04Y02E30/40
    • The present invention relates to a generation system for converting compressed air in a passive main control room habitability system to energy when the main control room habitability system is activated during an accident scenario in a nuclear reactor power plant. The system includes a pressure regulator for reducing the pressure of the compressed air to produce reduced pressurized air, an eductor to deliver air to the control room, and piping to connect the tank to the pressure regulator and the eductor to allow the flow of compressed air therein. The generation system includes a mechanism positioned upstream of the eductor for receiving the reduced pressurized air from the pressure regulator and converting at least a portion of said reduced pressurized air into energy.
    • 本发明涉及一种用于在主反应堆发电厂的事故情况下主动控制室适应性系统被激活时将被动主控制室适应性系统中的压缩空气转换成能量的发电系统。 该系统包括用于减小压缩空气的压力以产生减压加压空气的压力调节器,用于将空气输送到控制室的喷射器,以及将罐连接到压力调节器和喷射器的管道,以允许压缩空气流 在其中。 发电系统包括位于喷射器上游的机构,用于从压力调节器接收减少的加压空气并将至少一部分所述减压加压空气转化为能量。