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Nonlinear seismic response of a gravity dam under near-fault ground motions and equivalent pulses

机译:近断层地震动和等效脉冲作用下重力坝的非线性地震反应

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In this paper, the nonlinear seismic response of gravity dams to forward-directivity and ordinary (non forward directivity) near-fault earthquake ground motions is investigated. Considering Pine Flat dam as case study, it is numerically modeled along with its full reservoir using the finite element method. Two sources of nonlinearity are considered in the analysis: (1) the material nonlinearity of dam concrete, and (2) the geometric nonlinearity by inserting a joint at the base of the dam. Seventy-five forward-directivity and sixty ordinary near-fault ground motions are used to obtain statistically significant results. The equivalent representative pulses of the selected forward-directivity ground motions are extracted using a well-known methodology. The dam-reservoir model is analyzed under the equivalent pulses as well to identify the cases for which the equivalent pulses can capture the structural response to the actual forward-directivity ground motions. Finally, the effects of pulse period, amplitude and energy on the seismic response of the dam-reservoir system are studied.
机译:本文研究了重力坝对正向和普通(非正向)近断层地震地震动的非线性地震响应。以Pine Flat大坝为案例研究,使用有限元方法对其全库进行数值建模。分析中考虑了两个非线性源:(1)大坝混凝土的材料非线性,(2)通过在大坝底部插入接缝来实现几何非线性。使用75个正向方向性和60个普通的近断层地震动来获得具有统计意义的结果。使用众所周知的方法提取选定的前向地面运动的等效代表脉冲。在等效脉冲下还对大坝-水库模型进行了分析,以确定等效脉冲可以捕获对实际前向地面运动的结构响应的情况。最后,研究了脉冲周期,振幅和能量对大坝-水库系统地震响应的影响。

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