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首页> 外文期刊>Thin-Walled Structures >On the nonlinear dynamic analysis of base-isolated three-dimensional rectangular thin-walled steel tanks equipped with vertical baffle
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On the nonlinear dynamic analysis of base-isolated three-dimensional rectangular thin-walled steel tanks equipped with vertical baffle

机译:竖向挡板的基础隔震三维矩形薄壁钢罐的非线性动力学分析

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摘要

This paper intends at numerically analyzing the simultaneous influences of base-isolator system and vertical baffle on the seismic performance of a three-dimensional (3D) rectangular liquid storage container, presuming irrotational, inviscid, and incompressible flows. A boundary element technique with meaningful computational efficiency is primarily formulated to treat the spectral problem of liquid motion using the zoning method including the velocity potentials alone of the half free-surface length, which is coupled with Finite elements for tank wall using equilibrium and compatibility conditions. In the soil/foundation component, the foundation is modeled by shell finite elements and the half-space soil medium is modeled employing the external boundary elements, which fulfill the radiation condition of homogeneous media. Eventually, above two parts are attached to equation for isolator motion in the time domain, to attain the total system's nonlinear seismic response. The validity and efficiency of the present coupled numerical method is confirmed against available theoretical solutions and numerical predictions, revealing a good agreement with benchmark results. The sensitivity of base forces, the maximum hydrodynamic pressure and liquid oscillation in relation to some system parameters involving the baffle height, the base-isolator stiffness and the soil properties have been highlighted.
机译:本文旨在数值分析基础隔震系统和垂直挡板对三维(3D)矩形液体存储容器的抗震性能的影响,并假设存在无旋流,无粘性和不可压缩的流动。首先制定了一种具有有意义的计算效率的边界元技术,使用分区方法来处理液体运动的频谱问题,该方法仅包括自由表面长度的一半的速度势,并使用平衡和相容性条件与有限元结合,用于罐壁。在土壤/基础成分中,基础是通过壳有限元建模的,而半空间土壤介质是使用外部边界元建模的,它们满足均质介质的辐射条件。最终,将以上两部分附加到时域隔离器运动的方程,以获得整个系统的非线性地震响应。相对于现有的理论解和数值预测,本耦合数值方法的有效性和有效性得到了证实,与基准结果吻合得很好。突出了基础力的敏感性,最大流体动压和液体振荡与涉及挡板高度,基础隔离器刚度和土壤特性的某些系统参数的关系。

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