首页> 外文会议>Annual conference of the Canadian Nuclear Society;CNS/CNA student conference >KEY TECHNICAL ISSUES WHEN DEVELOPING PROBABILISTIC FOUNDATION INPUT RESPONSE SPECTRA FOR SEISMIC ANALYSIS
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KEY TECHNICAL ISSUES WHEN DEVELOPING PROBABILISTIC FOUNDATION INPUT RESPONSE SPECTRA FOR SEISMIC ANALYSIS

机译:为地震分析开发概率基础输入响应谱时的关键技术问题

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Many existing nuclear facilities have undertaken updated Probabilistic Seismic Hazard Analysis(PSHA) in response to the March 11, 2011, Great Tohoku Earthquake and subsequent tsunami. For nuclear facilities located in eastern North America the updated PSHA must accurately account for high-frequency (> 10 Hz spectral frequency) ground motions and may include the assessment of site response resulting from site-specific geotechnical conditions. Recent experience at a site in eastern Canada suggests that the assessment of high frequency ground motion critically depends on the site response model. This experience will be summarized including (1) the development of a site geotechnical model that reflects available site data, accounting for epistemic uncertainty and aleatory variability, (2) the derivation of frequency-dependent site amplification factors, and (3) combining the amplification factors with thePSHA results to develop Foundation Input Response Spectra (FIRS), with emphasis on modeling spectral frequencies above 10 Hz.
机译:为了应对2011年3月11日东北东北大地震和随后的海啸,许多现有的核设施都进行了更新的概率地震危险性分析(PSHA)。对于位于北美东部的核设施,更新后的PSHA必须准确考虑高频(> 10 Hz频谱频率)的地面运动,并且可能包括对因特定站点的岩土条件而引起的站点响应的评估。加拿大东部某站点的最新经验表明,对高频地面运动的评估主要取决于站点响应模型。将总结这些经验,包括(1)开发反映可用站点数据的站点岩土模型,说明认知不确定性和偶然变化,(2)推导频率相关站点放大因子,以及(3)结合放大结合PSHA结果,开发基础输入响应频谱(FIRS),重点是对10 Hz以上的频谱频率进行建模。

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