用层次分析法选择核电站最优设计

L. Kiser, L. D. Otero
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引用次数: 2

摘要

核电站(NPP)设计中的新兴技术为决策者提供了探索核电行业创新选择的机会。由于与过去几十年相比,在核电站设计选择方面有更多的选择,因此有一个工具可以将核电站参数与决策者的优先事项进行比较,这在商业战略中可能会被证明是有用的。小型模块化堆和熔盐堆的运行和安全特性与普通和传统的轻水堆(LWR)的决策标准不同。本文运用层次分析法(AHP)对三个核电站设计方案的财务、运行和风险属性进行了探讨和比较,提出了一个选择最优设计方案的决策工具。对定义的标准进行两两比较,以确定优先级和标准权重,这是基于文献综述的努力和领域经验,目标是降低成本,优化工厂特性和最小化风险。AHP模型的分析结果表明,LWR设计是最优的。轻水堆是运行中最常见的核电站类型,预计将拥有最有利的公众舆论、经过验证的安全特性和最低的许可成本。总体而言,本文提出的AHP模型反映了新兴核电站设计和技术在完全进入主流核电工业之前必须克服的一些挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Using AHP to Choose Optimal Nuclear Power Plant Design
Emerging technologies in nuclear power plant (NPP) design offer decision makers the chance to explore innovative options in the nuclear power industry. Because there are more options available when it comes to NPP design selection than in past decades, having a tool to compare NPP parameters to decision maker priorities could prove useful in business strategy. The operational and safety features of Small Modular Reactors and Molten Salt Reactors address decision criteria differently than the common and traditional Light Water Reactors (LWR). This paper uses the Analytic Hierarchy Process (AHP) to explore and compare the financial, operational, and risk attributes of three nuclear power plant designs and presents a decision-making tool for choosing the optimal design. A pairwise comparison of defined criteria to establish priorities and criteria weights was based on a literature review effort and domain experience with the goals of reducing cost, optimizing plant characteristics, and minimizing risk. Results from the AHP model show the LWR design as optimal. LWRs are the most common type of NPP in operation and expected to have the most favorable public opinion, proven safety features, and lowest licensing costs. Overall, the AHP model presented in this paper reflects some challenges that the emerging NPP designs and technologies must overcome before fully breaking into the mainstream nuclear power industry.
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