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Non-linear seismic response of concrete gravity dams to near-fault ground motions including dam-water-sediment-foundation interaction

机译:混凝土重力坝对近断层地震动的非线性地震响应,包括坝-水-沉积-地基相互作用

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This study focuses on non-linear seismic response of a concrete gravity dam subjected to near-fault and far-fault ground motions including dam-water-sediment-foundation rock interaction. The elasto-plastic behavior of the dam concrete is idealized using Drucker-Prager yield criterion based on associated flow rule assumption. Water in the reservoir is represented by 9-noded isoparametric quadrilateral fluid finite elements while the dam, the foundation rock and the sediment layer are modeled by using 8-noded isoparametric quadrilateral solid finite elements. The program NONSAP modified for elasto-plastic analysis of fluid-structure systems using the Lagrangian fluid finite element is employed in the response calculations. The fluid element includes the effects of surface waves and sloshing behavior of fluids. Non-linear seismic analyses of the selected concrete dam subjected to both near-fault and far-fault ground motions are performed. The results obtained from linear and non-linear analyses are compared with each other.
机译:这项研究的重点是混凝土重力坝在近断层和远断层地震动(包括坝-水-沉积-基础-岩石相互作用)下的非线性地震响应。基于相关流规则假设,使用Drucker-Prager屈服准则对大坝混凝土的弹塑性行为进行了理想化处理。水库中的水由9个节点的等参四边形流体有限元表示,而大坝,基础岩石和沉积物层则由8个节点的等参四边形固体有限元建模。在响应计算中,使用了经修改的NONSAP程序,该程序使用拉格朗日流体有限元对流体结构系统进行了弹塑性分析。流体元件包括表面波和流体的晃动行为的影响。对选择的混凝土坝进行了近断层和远断层地震动的非线性地震分析。将从线性和非线性分析获得的结果进行比较。

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