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Optimal design of friction pendulum system properties for isolated structures considering different soil conditions

机译:考虑不同土壤条件的隔震结构摩擦摆系统特性的优化设计

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This study aims at evaluating the optimal properties of friction pendulum bearings to be employed for the seismic protection of elastic isolated structural systems under earthquake excitations with different characteristics in terms of frequency content. A two-degree-of-freedom model is considered to describe the isolated system behavior while accounting for the superstructure flexibility and a non-dimensional formulation of the governing equations of motion is employed to relate the characteristic parameters describing the isolator and structure properties to the response parameters of interest for the performance assessment. Seismic excitations are modeled as time-modulated filtered Gaussian white noise random processes of different intensity within the power spectral density method. The filter parameters control the frequency content of the random excitations and are calibrated to describe stiff, medium and soft soil conditions, respectively. Finally, multi-variate regression expressions are obtained for the optimum values of the friction coefficient that minimize the superstructure displacements relative to the base mass as a function of the structural system properties, of the seismic input intensity and of the soil condition. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本研究旨在评估在频率激励下具有不同特性的地震作用下的弹性摆式结构系统在地震作用下的抗震保护的最佳性能。考虑到上层建筑的灵活性时,考虑使用两自由度模型来描述孤立的系统行为,并且采用运动控制方程的无量纲公式将描述隔离器和结构特性的特征参数与结构相关联。绩效评估感兴趣的响应参数。地震激发被建模为功率谱密度方法中不同强度的时间调制滤波高斯白噪声随机过程。滤波器参数控制随机激励的频率内容,并经过校准以分别描述刚性,中等和软土条件。最后,获得了摩擦系数的最佳值的多元回归表达式,该表达式使上层建筑相对于基础质量的位移最小化,该位移是结构系统特性,地震输入强度和土壤条件的函数。 (C)2016 Elsevier Ltd.保留所有权利。

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