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Cost- and Risk-Based Seismic Design Optimization of Nuclear Power Plant Safety Systems

机译:基于成本和风险的核电站安全系统的地震设计优化

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摘要

Seismic analysis, design, and qualification of systems, structures, and components (SSCs) is a significant contributor to the capital cost of a nuclear power plant. To reduce capital costs of advanced nuclear power plants and make commercial nuclear energy more competitive, innovations are needed in their structural design and construction, and not just in the reactor core and associated systems. Seismic isolation has been identified as an important cost-cutting technology that enables standardization of equipment across various sites. This paper develops and demonstrates a cost- and risk-based seismic design optimization of a representative safety system in a nuclear power plant with the dual goals of minimizing overnight capital cost and meeting safety goals. The design optimization can also include component seismic isolation, in which case, the optimized design includes a set of equipment that needs to be seismically isolated to minimize capital cost. The open-source codes MASTODON and Dakota are used for seismic probabilistic risk assessment and design optimization, respectively. A generic nuclear facility with a safety system comprising SSCs that are common to nuclear power plants is considered for the demonstration of the design optimization and is assumed to be located at the Idaho National Laboratory site. Generic costs and seismic design cost functions are assumed for the SSCs of the safety system. The sum of the costs of the SSCs is minimized in the optimization process, while the risk of failure of the safety system is provided as a constraint. Results show that the optimization process reduces capital costs significantly while automatically prioritizing the safety of SSCs that contribute most to the risk of the safety system.
机译:系统,结构和组件(SSCS)的地震分析,设计和资格是核电站资本成本的重要贡献者。为降低先进的核电站的资本成本并使商业核能更具竞争力,在结构设计和建设中需要创新,而不仅仅是在反应堆核心和相关系统中。地震隔离已被确定为一个重要的成本切割技术,可在各个地点进行标准化。本文开发并展示了核电站代表安全系统的成本和风险的地震设计优化,具有最小化过夜资本成本和满足安全目标的双重目标。设计优化还可以包括元件地震隔离,在这种情况下,优化的设计包括一组需要地震动的设备,以最小化资本成本。开源代码Mastodon和Dakota分别用于地震概率风险评估和设计优化。具有安全系统的普通核设施,该安全系统包括核电厂共同的SSCS,用于了设计优化的演示,并被认为位于爱达荷州国家实验室遗址。假设通用成本和地震设计成本函数用于安全系统的SSC。在优化过程中,SSCS的成本总和最小化,而安全系统的失败风险被提供为约束。结果表明,优化过程显着降低了资本成本,同时自动优先考虑SSC的安全性,这为安全系统的风险贡献了最大。

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