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Underground Reactor Containments: An Option for the Future?

机译:地下反应堆遏制:未来选项?

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Changing world conditions and changing technologies suggest that serious consideration should be given to siting of nuclear power plants underground. Underground siting is not a new concept. Multiple research reactors, several weapons production reactors, and one power reactor have been built underground. What is new are the technologies and incentives that may now make underground siting a preferred option. The conditions and technologies, along with their implications, are discussed herein. Underground containments can be constructed in mined cavities or pits that are then backfilled with thick layers of rock and soil. Conventional above-ground containments resist assaults and accidents because of the strength of their construction materials and the effectiveness of their safety features that are engineered to reduce loads. However, underground containments can provide even more resistance to assaults and accidents because of the inertia of the mass of materials over the reactor. High-technology weapons or some internal accidents can cause existing strong-material containments to fail, but only very-high energy releases can move large inertial masses associated with underground containments. New methods of isolation may provide a higher confidence in isolation that is independent of operator action.
机译:改变世界条件和改变技术表明,应考虑到地下核电站的选址。地下选址不是一个新的概念。地下建造了多项研究堆,几种武器生产反应堆和一个电源反应堆。什么是新的技术和激励措施,现在可以将地下选择一个优先选择。本文讨论了条件和技术以及其含义。地下遏制件可以在挖洞或坑中构造,然后用厚厚的岩土和土壤来回填充。由于其建筑材料的强度和其安全功能的有效性,常规地上遏制抵抗攻击和事故,以及他们的安全功能,以减少负荷。然而,由于反应器上的材料质量的惯性,地下遏制可以提供更大的抗攻击和事故。高科技武器或一些内部事故可能导致现有的强力遏制失败,但只有非常高的能量释放可以移动与地下遏制相关的大型惯性群众。新的隔离方法可以对独立于操作员动作的隔离提供更高的置信度。

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