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Seismic Response of Concrete Arch Dams Including Dam-Reservoir- Foundation Interaction Using Infinite Elements

机译:混凝土拱坝的地震响应,包括水坝-水库-地基相互作用的无限元分析

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In the present paper, a direct time domain procedure is used for dynamic linear and nonlinear analysis of the coupled system of reservoir-dam-foundation in 3D space. The foundation is assumed massed and infinite elements are used to model the semi-infinite medium via the far-end boundary of the foundation model. The nonlinear behavior of mass concrete is modeled using the smeared crack approach in which the elements can be cracked in each Gaussian point. The reservoir is assumed to be compressible and is modeled using finite element method with appropriate boundary conditions. The coupled system is solved using the staggered displacement method. As a case study, KARADJ double curvature arch dam in Iran is chosen to in- vestigate the effect of massed foundation on the seismic response of the system. It is found that the response of the system with massed foundation including infinite elements is the same as that when the artificial ab- sorbing boundary on the far-end boundary of the foundation is modeled using the viscous boundary. In addi- tion, when the foundation is assumed mass-less, the resulted seismic stresses within the dam body can be too conservative. Decreasing the crack profiles and displacements are observed in nonlinear analysis of the dam when infinite elements are used to model the semi-infinite medium via the far-end boundary of the foundation model.
机译:在本文中,直接时域过程用于3D空间中水库-坝基耦合系统的动态线性和非线性分析。假设基础是大众化的,并通过基础模型的远端边界使用无限元对半无限介质建模。大体积混凝土的非线性行为是使用拖尾裂缝方法进行建模的,其中元素可以在每个高斯点处破裂。假定储层是可压缩的,并使用有限元方法在适当的边界条件下进行建模。使用交错位移法求解耦合系统。作为案例研究,选择了伊朗的KARADJ双曲拱拱坝来研究基础夯实对系统地震响应的影响。我们发现,包含无限元素的地基为基础的系统的响应与使用粘性边界对基础的远端边界上的人工吸收边界进行建模时的响应相同。另外,当假定地基较小时,在坝体内产生的地震应力可能过于保守。当使用无限元通过地基模型的远端边界对半无限介质建模时,在坝的非线性分析中观察到裂缝轮廓和位移的减小。

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