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Determining seismic fragility of structures and components in nuclear power plants using multiple ground motion parameters - Part Ⅰ: Methodology

机译:使用多个地面运动参数确定核电厂结构和组件的地震脆性-第一部分:方法论

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摘要

This study proposes an innovative fragility method that overcomes the problems in the existing method by using multiple ground motion parameters, providing more realistic seismic capacity and fragility estimates of structures and components. By incorporating the correlations among spectral accelerations at structural dominant modes and the commonly used ground motion parameter such as peak ground acceleration, the conservatism in seismic responses is effectively reduced, in turn resulting in higher seismic capacity estimates of structures and components. Given the advantages of the proposed method, the computational cost is deemed acceptable for applications. The proposed fragility method should be implemented in Seismic Margin Assessment and Seismic Probabilistic Risk Assessment, improving the seismic capacity estimates of the critical structures and components that limit the overall plant seismic capacity. The companion paper (Part II) presents an application of the proposed method to a horizontal heat exchanger in Darlington nuclear generating station in Ontario, Canada to illustrate its procedure and to demonstrate its benefits.
机译:这项研究提出了一种创新的脆性方法,该方法通过使用多个地面运动参数克服了现有方法中的问题,从而提供了更现实的抗震能力以及结构和组件的脆性估计。通过结合结构主导模式下的频谱加速度与常用的地面运动参数(例如峰值地面加速度)之间的相关性,有效降低了地震响应中的保守性,进而导致了对结构和构件的更高抗震能力的估计。鉴于所提出方法的优点,计算成本被认为对于应用是可接受的。提议的脆弱性方法应在地震余量评估和地震概率风险评估中实施,以改善限制整个工厂抗震能力的关键结构和组件的抗震能力估计。随附的论文(第二部分)介绍了该方法在加拿大安大略省达灵顿核电站的卧式换热器中的应用,以说明其程序并展示其益处。

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