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Parametric Study on Seismic Energy Response of Base-Isolated Structures

机译:隔震结构地震能量响应的参数研究

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The energy equations of the base-isolated structure are established based on the energy equilibrium theory. Reasonable strong seismic motion records are selected. Based on the general FEA program, the bidirectional nonlinear behavior of lead rubber bearing is taken into account by using two orthogonal nonlinear spring elements. Considering the effect of principal parameters of lead rubber bearing and dissimilar seismic motions, dimensional FEA model of base-isolated structure is established. And the seismic energy response analyses for base-isolated structure are carried out under the three-dimensional seismic motions. The study results are obtained as follow: 1) With the increment of lead core diameter or stiffness ratio, the seismic input energy can be enlarged and the isolation effect of lead rubber bearing can be reduced; 2) The seismic energy response of base-isolated structure is greatly discrepant under different seismic motions. Especially, when the duration of seismic motion prolongs or the natural period of base-isolated structure approaches to the predominant period of seismic motion, the seismic energy response of structure can be enhanced.
机译:基于能量平衡理论,建立了基础隔离结构的能量方程。选择合理的强烈地震运动记录。基于一般的FEA程序,通过使用两个正交的非线性弹簧元件,考虑了铅橡胶轴承的双向非线性行为。考虑铅橡胶轴承主要参数和异种地震运动的影响,建立了基础隔震结构的三维有限元分析模型。并在三维地震运动下进行了基础隔震结构的地震能量响应分析。研究结果如下:1)随着铅芯直径或刚度比的增大,地震输入能量会增大,铅橡胶轴承的隔震效果会降低; 2)基础隔震结构在不同地震作用下的地震能量响应差异很大。特别是,当地震运动的持续时间延长或基础隔离结构的自然周期接近地震运动的主要周期时,可以增强结构的地震能量响应。

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