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POTENTIAL ADVANTAGES OF UNDERGROUND NUCLEAR PARKS

机译:地下核公园的潜在优势

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In this paper we argue that an underground nuclear park (UNP) could potentially lead to lower capital and operating cost for the reactors installed in the UNP compared to the traditional approach, which would be to site the reactors at the earth's surface at distributed locations. The UNP approach could also lead to lower waste management cost. A secondary benefit would be the increased margins of safety and security that would be realized simply as a consequence of siting the reactors underground. Lowered capital and operating cost for a UNP relative to traditional reactor siting is possible through the aggregate effect of the elimination of containment structures, in-place decommissioning, reduced physical security costs, reduced weather-related costs, reduced cost of liability insurance and reduced unit-cost for the nth reactor made possible through the continuous construction of multiple reactors at the same underground location. Other cost reductions might be possible through the transfer of the capital cost for part of the underground construction from the reactor owners to the owners of the UNP. Lower waste management cost is possible by siting the UNP at a location where there are geological and hydrological conditions suitable for hosting both the reactors and the repository for the waste from those reactors. After adequate storage and cooling, and assuming direct disposal, this would enable the spent fuel from the reactors to be transported directly to the repository and remain entirely underground during the transport process. Community concerns and transportation costs would be significantly reduced relative to current situations where the reactors are separated from the repository by long distances and populated areas. The concept for a UNP in bedded salt is used to develop a rough order of magnitude cost estimate for excavation of the reactor array portion of a UNP. Excavation costs appear to be only a small fraction of the overall power plant costs for an UNP in salt. Many engineering, safety, environmental, regulatory and cost-benefit and technical issues related to the UNP concept need to be evaluated.
机译:在本文中,我们认为,与传统方法相比,地下核电站(UNP)可能会导致UNP中安装的反应堆的资本和运营成本降低,而传统方法是将反应堆放置在分散位置的地表。 UNP方法还可以降低废物管理成本。第二个好处是增加安全保障的余地,这仅仅是将反应堆安装在地下即可实现的。相对于传统反应堆选址而言,UNP的资本和运营成本可通过消除安全壳结构,就地退役,减少的物理安全成本,减少的与天气有关的成本,减少的责任保险成本和减少的单位的综合效应而降低通过在同一地下位置连续建造多个反应堆,第n个反应堆的成本得以实现。通过将部分地下建筑的资本成本从反应堆所有者转移到UNP所有者,其他降低成本的方法也是可能的。通过将UNP放在有适合容纳反应堆和反应堆废物的地质和水文条件的地点,可以降低废物管理成本。经过充分的存储和冷却并假定直接处置之后,这将使反应堆中的乏燃料能够直接运输到处置库,并在运输过程中完全保留在地下。相对于目前的情况,反应堆与储存库之间相隔很长的距离和人口稠密的地区,这将大大减少社区关注和运输成本。床盐中UNP的概念用于为UNP的反应堆阵列部分的开挖制定粗略的数量级成本估算。挖掘成本似乎只是UNP盐厂发电厂总成本的一小部分。与UNP概念有关的许多工程,安全,环境,法规和成本效益以及技术问题都需要进行评估。

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