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Underground nuclear power station using self-regulating heat-pipe controlled reactors

机译:使用自调节热管控制反应堆的地下核电站

摘要

A nuclear reactor for generating electricity is disposed underground at the bottom of a vertical hole that can be drilled using conventional drilling technology. The primary coolant of the reactor core is the working fluid in a plurality of thermodynamically coupled heat pipes emplaced in the hole between the heat source at the bottom of the hole and heat exchange means near the surface of the earth. Additionally, the primary coolant (consisting of the working flud in the heat pipes in the reactor core) moderates neutrons and regulates their reactivity, thus keeping the power of the reactor substantially constant. At the end of its useful life, the reactor core may be abandoned in place. Isolation from the atmosphere in case of accident or for abandonment is provided by the operation of explosive closures and mechanical valves emplaced along the hole. This invention combines technology developed and tested for small, highly efficient, space-based nuclear electric power plants with the technology of fast-acting closure mechanisms developed and used for underground testing of nuclear weapons. This invention provides a nuclear power installation which is safe from the worst conceivable reactor accident, namely, the explosion of a nuclear weapon near the ground surface of a nuclear power reactor.
机译:用于发电的核反应堆被放置在可以使用常规钻探技术钻出的垂直孔的底部。反应堆堆芯的主要冷却剂是位于孔底部的热源与靠近地球表面的热交换装置之间的孔中的多个热力学耦合热管中的工作流体。另外,主要冷却剂(由反应堆堆芯中的热管中的工作液组成)可缓和中子并调节其反应性,从而使反应堆的功率保持基本恒定。在使用寿命结束时,可以将反应堆堆芯丢弃在适当的位置。爆炸孔和沿孔放置的机械阀的操作可在发生事故或被遗弃时与大气隔离。本发明将为小型,高效,天基核电站开发和测试的技术与为核武器的地下测试而开发和使用的速动闭合机构技术相结合。本发明提供了一种核电设备,该核电设备可避免发生最严重的反应堆事故,即发生在核电反应堆地面附近的核武器爆炸。

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