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Linear and nonlinear response of concrete slab on CFR dam during earthquake

机译:CFR大坝地震作用下混凝土面板的线性和非线性响应。

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The joint between concrete slab and rockfill is designed as welded contact in the classical modeling of concrete-faced rockfill (CFR) dams and earthquake response of the CFR dams is determined by this method. In this study, linear and nonlinear response of Torul CFR Dam including interface element between concrete slab and rockfill were investigated for the duration of strong seismic excitation. The finite element analyses were performed by employing both cases, empty and full reservoir, to research the effect of the reservoir water on the earthquake response of the dam. The reservoir water was modeled with fluid finite elements by the Lagrangian approach. The Drucker-Prager model was used in nonlinear analyses for concrete slab, rockfill and soil materials. According to finite element analyses, displacement and stress components were increased by hydrodynamic pressure. The nonlinear response of the concrete slab was monitored about the peak ground acceleration (pga). This study reveals that the size of sliding zone increases with increasing acceleration amplitudes.
机译:在混凝土面板堆石坝(CFR)的经典模型中,将混凝土板与堆石之间的接头设计为焊接接触,并通过这种方法确定了堆石坝的地震响应。在这项研究中,研究了在强烈地震激励作用下,Tulul CFR大坝包括混凝土板和堆石之间的界面元素的线性和非线性响应。通过同时使用空库和满库两种情况进行了有限元分析,以研究库水对大坝地震响应的影响。通过拉格朗日方法使用流体有限元对储层水进行建模。 Drucker-Prager模型用于混凝土板,堆石和土壤材料的非线性分析。根据有限元分析,动压增加了位移和应力分量。监测混凝土板的非线性响应有关最大地面加速度(pga)的信息。这项研究表明,滑动区域的大小随加速度幅度的增加而增加。

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