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Seismic response of concrete gravity dam-ice covered reservoir-foundation interaction systems

机译:混凝土重力坝-冰盖储层-基础相互作用系统的地震反应

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This paper examines the ice cover effects on the seismic response of concrete gravity dam-reservoir-foundation interaction systems subjected to a horizontal earthquake ground motion. ANSYS program is used for finite element modeling and analyzing the ice-dam-reservoir-foundation interaction system. The ice-dam-reservoir interaction system is considered by using the Lagrangian (displacement-based) fluid and solid-quadrilateral-isoparametric finite elements. The SarIyar concrete gravity dam in Turkey is selected as a numerical application. The east-west component of Erzincan earthquake, which occurred on 13 March 1992 in Erzincan, Turkey, is selected for the earthquake analysis of the dam. Dynamic analyses of the dam-reservoir-foundation interaction system are performed with and without ice cover separately. Parametric studies are done to show the effects of the variation of the length, thickness, elasticity modulus and density of the ice-cover on the seismic response of the dam. It is observed that the variations of the length, thickness, and elasticity modulus of the ice-cover influence the displacements and stresses of the coupled system considerably. Also, the variation of the density of the ice-cover cannot produce important effects on the seismic response of the dam.
机译:本文研究了冰盖对水平地震地震动下混凝土重力坝-水库-地基相互作用系统地震响应的影响。 ANSYS程序用于有限元建模和分析冰坝-水库-地基相互作用系统。通过使用拉格朗日(基于位移)流体和固体-四边形-等参有限元来考虑冰坝-水库相互作用系统。选择了土耳其的SarIyar混凝土重力坝作为数值应用。大坝的地震分析被选为1992年3月13日在土耳其Erzincan发生的Erzincan地震的东西向分量。大坝-水库-基础相互作用系统的动力分析分别在有和没有冰盖的情况下进行。进行了参数研究,以显示覆冰的长度,厚度,弹性模量和密度变化对大坝地震响应的影响。可以看出,冰盖的长度,厚度和弹性模量的变化会极大地影响耦合系统的位移和应力。而且,冰盖密度的变化不会对大坝的地震响应产生重要影响。

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