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FRAGILITY OF A FLOOD DEFENSE STRUCTURE SUBJECTED TO MULTI-HAZARD SCENARIO

机译:多种灾害情景下的防洪结构的脆弱性

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The March 2011 Fukushima Daiichi nuclear power plant disaster has highlighted the significance of maintaining the integrity of flood protection systems in the vicinity of a nuclear power plant. In the US, Oyster Creek nuclear plant was shut down when high storm surge during hurricane Sandy threatened its water intake and circulation systems. A gravity dam located upstream of a power plant can undergo seismic failure or flooding failure leading to flooding at the nuclear plant. In this paper, we present the results from a study on evaluating the fragilities for failure of a concrete gravity dam under both the flooding and the seismic events. Finite element analysis is used for modeling the seismic behavior as well as the seepage through foundation. A time-dependent analysis is considered to account for appropriate nonlinearities. Failure of dam foundation is characterized by rupture, and the failure of dam body is characterized by excessive deformation for the flooding and seismic loads respectively. The study presented in this paper has focused on a concrete gravity dam because of the need of validation of models which exist in prior studies only for concrete gravity dams. However, the concepts are directly applicable to any concrete flood defense structure.
机译:2011年3月的福岛第一核电站灾难凸显了维持核电站附近防洪系统完整性的重要性。在美国,飓风桑迪期间的高风暴潮威胁到其取水和循环系统,牡蛎溪核电站也因此关闭。位于电厂上游的重力坝可能会遭受地震破坏或洪水破坏,从而导致核电站发生洪水。在本文中,我们提出了一项评估混凝土重力坝在洪水和地震事件下破坏脆弱性的研究结果。有限元分析用于对地震行为以及地基渗流进行建模。考虑到时间相关的分析以考虑适当的非线性。坝基的破坏以破裂为特征,坝体的破坏以洪水和地震荷载分别过度变形为特征。由于需要验证现有研究中仅针对混凝土重力坝的模型,因此本文中提出的研究集中于混凝土重力坝。但是,这些概念直接适用于任何具体的防洪结构。

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