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Probabilistic seismic hazard assessment for a new-build nuclear power plant site in the UK

机译:英国新建核电站现场的概率地震危害评估

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A probabilistic seismic hazard analysis (PSHA) has been conducted as part of the Safety Case justification for a new-build nuclear power plant in the UK. The study followed a cost-efficient methodology developed by CH2M and associates for safety-significant infrastructure where high-level regulatory assurance is required. Historical seismicity was re-evaluated from original sources. The seismicity model considered fourteen seismic sources which, when combined, formed six alternative seismic source models. Separate models for the median ground-motion and aleatory variability were considered. The median ground-motion model comprised a suite of ground-motion equations adjusted to the site-specific conditions using V-S-kappa factors. A partially non-ergodic sigma model was adopted with separate components for the inter-event variability, and single-station intra-event variability, adjusted by a partially ergodic site-to-site variability term. Site response analysis was performed using equivalent-linear random vibration theory with explicit incorporation of the variability in the ground properties using Monte Carlo simulations. The final PSHA results were obtained by convolution of the hazard at the reference rock horizon with the site amplification factors. The overall epistemic uncertainty captured by the logic tree was assessed and compared against results from earlier PSHA studies for the same site.
机译:概率地震危害分析(PSHA)作为英国新建核电站的安全案例理由的一部分。该研究遵循CH2M开发的经济高效的方法,并为安全 - 重要的基础设施相关联,需要高级监管保证。从原始来源重新评估历史地震性。地震模型被认为是十四个地震源,当结合时,形成了六种替代地震源模型。考虑了中间运动和杀菌变异性的单独模型。中值的地运动模型包括使用V-S-Kappa因子调整到位点特定条件的地面运动方程套件。采用部分非ergodic Sigma模型采用单独的事后变异性的单独组件,以及由部分遍历位点对特的可变性术语调整的单站内发生变异性。使用相同的线性随机振动理论进行现场响应分析,并使用蒙特卡罗模拟显式融合地址的变化。最终的PSHA结果是通过参考岩石地平线的危害与现场扩增因子卷积来获得的。逻辑树捕获的整体认知不确定性被评估并与同一部位的早期PSHA研究的结果进行了评估。

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