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Multi-hazard fragility analysis for fluvial dikes in earthquake- and flood-prone areas

机译:地震和普通地区河流堤防的多危害脆弱性分析

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The paper presents a methodology for the multi-hazard fragility analysis of fluvial earthen dikes in earthquake- and flood-prone areas due to liquefaction. The methodology has been applied for the area along the Rhine River reach and adjacent floodplains between the gauges at Andernach and Düsseldorf. Along this domain, the urban areas are partly protected by dikes, which may be prone to failure during exceptional floods and/or earthquakes. The fragility of the earthen dikes is analysed in terms of liquefaction potential, characterized by the factor of safety estimated using the procedure of Seed and Idriss (1971). Uncertainties in the geometrical and geotechnical dike parameters are considered in a Monte Carlo simulation (MCS). Failure probability of the earthen structures is presented in the form of a fragility surface as a function of both seismic hazard and hydrologic/hydraulic load.
机译:本文由于液化,借助地震和普通区域河流和普通区域的多危险脆弱性分析的方法。该方法已沿着莱茵河到达和Andernach和Düsseldorf的仪表之间的河流覆盖范围和相邻的洪水平均值。沿着这个领域,城市地区部分受到堤防保护,在特殊洪水和/或地震期间可能易于失败。在液化电位方面分析了土堤的脆弱性,其特征在于使用种子和idriss(1971)的方法估计的安全因素。在蒙特卡罗仿真(MCS)中考虑了几何和岩土堤性参数中的不确定性。土结构的失效概率以脆弱表面的形式呈现,作为地震危害和水文/液压负载的函数。

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