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首页> 外文期刊>Journal of structural engineering >Evaluation of the Torsional Response of Multistory Buildings Using Equivalent Static Eccentricity
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Evaluation of the Torsional Response of Multistory Buildings Using Equivalent Static Eccentricity

机译:用等效静偏心率评估多层建筑的扭转响应

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摘要

The equivalent static eccentricities of seismic forces are usually defined by building codes with simple expressions of the static eccentricity. The inelastic torsional response of multistory buildings using nonlinear static analysis (NL-SA) with the equivalent static eccentricities is less easily predictable because the response is influenced by the extent of plastic deformations, and the eccentricity varies story by story at each step. To overcome this weakness, it is necessary to change the location of static eccentricity in each step of the NL-SA method. In this paper, a simplified procedure for the correct calculation using the NL-SA method with varying static eccentricity based on the modal response of a single-story scheme is presented. In order to estimate torsional effects on the seismic response, the associated plastic mechanism is developed in a three dimensional model of building, using an updated version of the DRAIN-3DX program. The torsional response of three different structural systems with different eccentricities and varying ground excitations is investigated. The results of the nonlinear response history analysis (NL-RHA) indicate that the torsional responses using the proposed procedure (using updated static eccentricity) and those obtained by the adaptive modal combination (AMC) method at both the flexible edge and the stiff edge are more consistent than the NL-SA with static eccentricity.
机译:地震力的等效静态偏心率通常由建筑规范定义,并带有简单的静态偏心率表达式。使用非线性静力分析(NL-SA)等效静态偏心率的多层建筑,其非弹性扭转响应较难预测,因为该响应受塑性变形程度的影响,并且偏心率在每个步骤中都随着楼层的变化而变化。为了克服这个缺点,有必要在NL-SA方法的每个步骤中更改静态偏心距的位置。在本文中,提出了一种基于单层方案的模态响应,使用可变静态偏心率的NL-SA方法进行正确计算的简化程序。为了估计扭转对地震响应的影响,使用DRAIN-3DX程序的更新版本,在建筑物的三维模型中开发了相关的塑性机制。研究了三种不同偏心率和不同地面激励的不同结构系统的扭转响应。非线性响应历史分析(NL-RHA)的结果表明,使用建议程序(使用更新的静态偏心率)的扭转响应以及通过自适应模态组合(AMC)方法获得的扭转响应在柔性边缘和刚性边缘均为比带有静态偏心的NL-SA更一致。

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