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首页> 外文期刊>Soil Dynamics and Earthquake Engineering >Sensitivity to modelling and design of curved surface sliding bearings in the nonlinear seismic analysis of base-isolated r.c. framed buildings
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Sensitivity to modelling and design of curved surface sliding bearings in the nonlinear seismic analysis of base-isolated r.c. framed buildings

机译:隔震钢筋混凝土非线性地震分析对曲面滑动轴承建模和设计的敏感性。框架建筑

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摘要

The main object of this study is to investigate the influence that different modelling assumptions of the curved surface sliding (CSS) bearings may have on the lateral-torsional response of irregular base-isolated structures located in near-fault area, characterized by fling-step and directivity effects with large amplitudes and long period horizontal velocity pulses. The second aim is to evaluate the effects of different design assumptions of the CSS system. To this end, a six-storey base-isolated reinforced concrete (r.c.) framed building, with an L-shaped plan and setbacks in elevation, is designed assuming low- and medium-type friction properties, both with two in plan distributions of the dynamic-fast friction coefficient, corresponding to: (i) the same value for all isolators; (ii) a different value for each isolator. Four additional cases are compared reducing the friction coefficient in accordance with a temperature increase up to 250 degrees C during ground motions. A computer code for the nonlinear dynamic analysis is developed, in order to compare five models of the CSS bearings that consider constant and variable axial loads combined with constant and variable friction coefficients as function of sliding velocity, axial pressure and stick-slip effect. A lumped plasticity model is used to describe the inelastic behaviour of the superstructure, including a 26-flat surface modelling of the axial load-biaxial bending moment elastic domain at the end sections of r.c. frame members. Near-fault ground motions with significant horizontal components are selected and scaled in line with the design hypotheses adopted for the test structure.
机译:这项研究的主要目的是研究曲面滑动(CSS)轴承的不同建模假设可能对位于断层附近,以跳阶为特征的不规则基础隔震结构的横向扭转响应的影响。振幅大,水平速度脉冲周期长的方向性效应。第二个目的是评估CSS系统不同设计假设的影响。为此,设计了一个六层的基础隔离钢筋混凝土(rc)框架建筑,该建筑具有L形的平面和高程的挫折,其设计假定为低和中型摩擦特性,两者在平面分布中均具有两个动态快速摩擦系数,对应于:(i)所有隔离器的值相同; (ii)每个隔离器的值都不同。比较了另外四种情况,即在地面运动过程中,随着温度升高到250摄氏度,摩擦系数减小了。开发了用于非线性动力分析的计算机代码,以比较考虑恒定和可变轴向载荷以及恒定和可变摩擦系数与滑动速度,轴向压力和粘滑效应的函数的CSS轴承的五个模型。集总塑性模型用于描述上部结构的非弹性行为,包括在RC端部的轴向载荷-双轴弯曲力矩弹性域的26个平面模型。框架成员。根据测试结构采用的设计假设,选择具有重要水平分量的近断层地面运动并进行缩放。

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