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Dynamic response of cylindrical structures considering coupled soil-structure interaction under seismic loading

机译:考虑地震作用下土-结构相互作用的圆柱结构动力响应

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This paper attempts to develop a mathematical model for estimating the seismic response of a cylindrical shaped nuclear reactor building resting in an elastic halfspace considering foundation compliance. Most of the research carried out on this topic has either been carried out by resorting to finite element method (FEM) which makes the computational cost expensive or based on the simplifying assumption of assuming the cylindrical structure as a multi degree lumped mass stick model with soil coupled as boundary springs. In the present paper an analytical model has been developed in which the deformation of the cylindrical body (including its shear deformation characteristics) has been taken into cognizance and then coupling with foundation stiffness a comprehensive solution has been sought based on Galerkin's weighted residual technique. The results are finally compared with FEM to check the reliability of the same. The results are found to be in good agreement with the detailed finite element analysis.
机译:本文试图建立一个数学模型,用于估计考虑到基础柔顺性的位于弹性半空间中的圆柱形核反应堆建筑物的地震响应。关于该主题的大多数研究要么通过诉诸有限元方法(FEM)进行,该方法使得计算成本昂贵,或者基于简化的假设,即假设圆柱结构为带土壤的多级集总质量棒模型。耦合为边界弹簧。在本文中,已经建立了一种分析模型,其中考虑了圆柱体的变形(包括其剪切变形特性),然后与地基刚度相结合,寻求基于Galerkin加权残差技术的综合解决方案。最后将结果与FEM进行比较以检验其可靠性。结果与详细的有限元分析非常吻合。

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