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Three-dimensional earthquake analysis of roller-compacted concrete dams

机译:滚子压实混凝土坝的三维地震分析

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Ground motion effect on a roller-compacted concrete (RCC) dams in the earthquake zone should be taken into account for the most critical conditions. This study presents three-dimensional earthquake response of a RCC dam considering geometrical non-linearity. Besides, material and connection non-linearity are also taken into consideration in the time-history analyses. Bilinear and multilinear kinematic hardening material models are utilized in the materially non-linear analyses for concrete and foundation rock respectively. The contraction joints inside the dam blocks and dam–foundation–reservoir interaction are modeled by the contact elements. The hydrostatic and hydrodynamic pressures of the reservoir water are modeled with the fluid finite elements based on the Lagrangian approach. The gravity and hydrostatic pressure effects are employed as initial condition before the strong ground motion. In the earthquake analyses, viscous dampers are defined in the finite element model to represent infinite boundary conditions. According to numerical solutions, horizontal displacements increase under hydrodynamic pressure. Besides, those also increase in the materially non-linear analyses of the dam. In addition, while the principle stress components by the hydrodynamic pressure effect the reservoir water, those decrease in the materially non-linear time-history analyses.
机译:应考虑在最关键的条件下对地震区中的滚子压实混凝土(RCC)水坝的研磨效果。本研究呈现了考虑几何非线性的RCC大坝的三维地震响应。此外,在时间历史分析中还考虑了材料和连接非线性。双线性和多线性运动淬火材料模型分别用于混凝土和基础岩石的物质非线性分析。坝块内的收缩接头和坝上基础储层相互作用由接触元件建模。基于拉格朗日方法的流体有限元模拟了储层水的静压和流体动力学。重力和静压压力效应在强接地运动之前用作初始条件。在地震分析中,在有限元模型中定义了粘性阻尼器,以表示无限边界条件。根据数值溶液,水平位移在流体动力学压力下增加。此外,那些也增加了大坝的物质非线性分析。此外,虽然通过流体动力学压力成分的原理应力效应储层水,但这些历史分析的实质性非线性时间历史分析。

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