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Seismic Risk Assessment of Safety-Critical Nuclear Facilities for the Purpose of Risk-Informed Periodic Reevaluation

机译:安全关键核设施的地震风险评估,以风险通知定期重新评估

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Following U.S. Department of Energy Order 420.1 C for the mitigation of natural phenomena hazards, such as earthquakes, to nuclear facilities through periodic reassessments, Idaho National Laboratory (INL) has developed the Seismic Hazard Periodic Re-Evaluation Methodology (SHPRM). The SHPRM involves seven criteria that evaluate changes to the seismic hazard at a site due to changes in the input models/data over time. Should these changes to the seismic hazard result in an increase in the design or licensing-basis ground motion of the facility from that which the facility was designed for, the SHPRM includes a criterion for reevaluating the facility risk objectives. While the criteria corresponding to the reevaluation of the seismic hazard and the design basis have been previously demonstrated and published, there is currently no guidance on reevaluating seismic risk for the purpose of SHPRM. This paper complements the published reports and papers on the application of SHPRM by demonstrating the risk objectives criterion for a generic nuclear facility (GNF), thereby closing the loop on the application of the SHPRM. The GNF is assumed to be located at the INL site and designated as a Seismic Design Category-3 facility as per American Society of Civil Engineers (ASCE)/Structural Engineering Institute (SEI) 43-05. The demonstration includes a risk assessment for a baseline seismic hazard calculated in 2006 and an updated seismic hazard calculated in 2015. After presenting the baseline and the updated seismic hazard curves at this site, the state-of-practice methodology for calculating fragility functions for the facility is presented, along with the fragilities calculated for the GNF. Employing a fault tree analysis using the INL in-house seismic analysis and risk assessment software MASTODON, the seismic risks of collapse of the GNF for the baseline and updated seismic hazards are computed to be 5.27E-05 and 5.2E-06, respectively. The results show that not only the reevaluated seismic risk is smaller, but more importantly, that it meets the risk objectives set by ASCE/SEI 43-05.
机译:在美国能源令420.1 c中,减轻自然现象危险,如地震,通过定期重新评估核设施,爱达荷国家实验室(INL)制定了地震危害周期性重新评估方法(SHPRM)。 SHPRM涉及七个标准,其由于输入模型/数据随时间的变化而评估对站点的地震危害的变化。如果对地震危害的这些变化导致设施设计的设施的设计或许可基础运动的增加,则SHPRM包括重新评估设施风险目标的标准。虽然先前已经证明和公布了与地震危险重新评估和设计基础对应的标准,但目前没有关于重新评估SHPRM目的的地震风险的指导。本文通过证明普通核设施(GNF)的风险目标标准来补充公布的报告和论文,从而缩写了普通核设施(GNF)的标准,从而缩小了SHPRM应用的环路。假设GNF位于INL现场,并根据美国土木工程师(ASCE)/结构工程研究所(SEI)43-05的美国社会指定为地震设计类别3设施。该示范包括2006年计算的基线地震危害的风险评估以及2015年计算的更新的地震危害。在介绍本网站的基线和更新的地震危险曲线之后,用于计算脆弱功能的实践方法设施呈现,以及为GNF计算的磁带。使用INL内部地震分析和风险评估软件Mastodon采用故障树分析,基线GNF崩溃的地震风险分别计算为5.27E-05和5.2E-06。结果表明,不仅重新评估的地震风险较小,而且更重要的是,它符合ASCE / SEI 43-05所设定的风险目标。

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