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首页> 外文期刊>International journal of geomechanics >Scalar- and Vector-Valued Fragility Analyses of Gravity Quay Wall on Liquefiable Soil: Example of Kobe Port
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Scalar- and Vector-Valued Fragility Analyses of Gravity Quay Wall on Liquefiable Soil: Example of Kobe Port

机译:液化土壤上重力码头墙的标量和矢量值脆弱分析:神户港的示例

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摘要

The crucial role of intensity measure (IM) selection in the seismic fragility analysis of gravity quay walls is demonstrated in this paper. Scalar-and vector-valued fragility functions are presented for seismic vulnerability and performance-based evaluation of a well-documented gravity quay wall. Nonlinear dynamic analysis by an advanced constitutive model, UBCSAND, was performed to capture earthquake-induced permanent displacement of the quay wall. The estimated permanent displacement and tilting of the wall are in good agreement with its performance observed during the Kobe 1995 earthquake. Numerous dynamic analyses were then performed to compile a database of permanent displacements. Subsequently, a refinement process was conducted to classify the IMs, based on their interdependency and also their efficiency, sufficiency, and predictability. Eventually, the most appropriate IMs along with the most applicable ones were selected as the nominate parameters for seismic fragility analyses. The results demonstrate that the probability of exceedance from a given damage state is strongly dependent on the IMs selected for the fragility analysis. Appropriateness of the selected IMs is discussed through the comparison of the observed damage and the probabilities given by the fragility functions. The fragility functions developed by vector-valued IMs obtain more realistic probability of the quay wall damage compared with the scalar-valued fragility curves. (C) 2019 American Society of Civil Engineers.
机译:本文证实了强度测量(IM)选择在重力码头壁的地震脆性分析中的关键作用。呈现标量和矢量值脆弱功能,用于地震漏洞和基于性能的重力码头墙的性能评估。通过先进的本构模型,UBCSAND进行非线性动态分析,以捕获码头壁的地震诱导的永久性位移。墙壁的估计永久性位移和倾斜与科比1995年地震期间观察到的性能良好。然后执行许多动态分析以编译永久性位移的数据库。随后,进行改进过程以基于它们的相互依赖性以及它们的效率,充足,可预测性对IMS进行分类。最终,最合适的IMS以及最适用的IMS被选为地震脆性分析的提名参数。结果表明,来自给定损伤状态的超越的概率强烈依赖于为脆弱性分析选择的IMS。通过比较观察到的损坏和脆弱功能给出的概率来讨论所选IMS的适当性。与矢量值IMS开发的脆弱功能与标量值碎片曲线相比,码头墙损坏的更现实概率。 (c)2019年美国土木工程学会。

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