Joint Optimization of Business Continuity by Designing Safety Barriers for Accident Prevention, Mitigation and Emergency Responses

Zhiguo Zeng, E. Zio
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引用次数: 1

Abstract

In this paper, an optimization model is developed for optimal design of the safety barriers in a nuclear power plant. By applying the developed model, safety barriers of different natures, i.e., the prevention, mitigation, emergency and recovery measures, can be optimized jointly for business continuity. A hierarchical numerical optimization method based on golden search and genetic algorithm is developed to obtain the optimal solutions. A numerical case study regarding the allocation of resources among the safety barriers prevention, mitigation and emergency in a nuclear power plant is worked out to maximize business continuity against the threat of steam generator tube ruptures.
通过设计事故预防、缓解和应急响应的安全屏障来联合优化业务连续性
本文建立了核电厂安全屏障优化设计的优化模型。通过应用所开发的模型,可以共同优化不同性质的安全屏障,即预防、缓解、应急和恢复措施,以实现业务连续性。提出了一种基于黄金搜索和遗传算法的分层数值优化方法。以某核电站为例,研究了在蒸汽发生器管破裂的情况下,如何在安全屏障的预防、缓解和应急之间进行资源分配,以最大限度地提高业务连续性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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