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使用小型模块化反应堆(SMR)扩展民用核系统的增殖阻力专家 elicitation。

An Expert Elicitation of the Proliferation Resistance of Using Small Modular Reactors (SMR) for the Expansion of Civilian Nuclear Systems.

机构信息

School of Public Policy, University of Maryland.

Center for International and Security Studies at Maryland.

出版信息

Risk Anal. 2018 Feb;38(2):242-254. doi: 10.1111/risa.12861. Epub 2017 Jul 11.

DOI:10.1111/risa.12861
PMID:28697285
Abstract

To facilitate the use of nuclear energy globally, small modular reactors (SMRs) may represent a viable alternative or complement to large reactor designs. One potential benefit is that SMRs could allow for more proliferation resistant designs, manufacturing arrangements, and fuel-cycle practices at widespread deployment. However, there is limited work evaluating the proliferation resistance of SMRs, and existing proliferation assessment approaches are not well suited for these novel arrangements. Here, we conduct an expert elicitation of the relative proliferation resistance of scenarios for future nuclear energy deployment driven by Generation III+ light-water reactors, fast reactors, or SMRs. Specifically, we construct the scenarios to investigate relevant technical and institutional features that are postulated to enhance the proliferation resistance of SMRs. The experts do not consistently judge the scenario with SMRs to have greater overall proliferation resistance than scenarios that rely on conventional nuclear energy generation options. Further, the experts disagreed on whether incorporating a long-lifetime sealed core into an SMR design would strengthen or weaken proliferation resistance. However, regardless of the type of reactor, the experts judged that proliferation resistance would be enhanced by improving international safeguards and operating several multinational fuel-cycle facilities rather than supporting many more national facilities.

摘要

为了在全球范围内促进核能的利用,小型模块化反应堆(SMR)可能是大型反应堆设计的一种可行替代方案或补充。一个潜在的好处是,SMR 可以允许更具抗扩散能力的设计、制造安排和燃料循环实践在广泛部署。然而,评估 SMR 抗扩散能力的工作有限,现有的扩散评估方法并不完全适用于这些新的安排。在这里,我们对由第三代+轻水反应堆、快堆或 SMR 驱动的未来核能部署情景的相对抗扩散能力进行了专家评估。具体来说,我们构建了这些情景来研究被认为增强 SMR 抗扩散能力的相关技术和制度特征。专家们并不一致认为 SMR 情景比依赖传统核能发电方案的情景具有更高的整体抗扩散能力。此外,专家们还就将长寿命密封核心纳入 SMR 设计是否会增强或削弱抗扩散能力存在分歧。然而,无论反应堆类型如何,专家们都认为通过加强国际保障措施和运营多个多国燃料循环设施,而不是支持更多的国家设施,将增强抗扩散能力。

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