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A displacement-based seismic design method with damage control for RC buildings

机译:钢筋混凝土建筑物基于位移的抗震设计方法

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摘要

This paper presents a displacement-based seismic design method with damage control, in which the targets for the considered performance level are set as displacements and a damage distribution is proposed by the designer. The method is based on concepts of basic structural dynamics and of a reference single degree of freedom system associated to the fundamental mode with a bilinear behaviour. Based on the characteristics of this behaviour curve and on the requirements of modal spectral analysis, the stiffness and strength of the structural elements of the structure satisfying the target design displacement are calculated. The formulation of this method is presented together with the formulations of two other existing methods currently considered of practical interest. To illustrate the application of the proposed method, 5 reinforced concrete plane frames: 8, 17 and 25 storey regular, and 8 and 12 storey irregular in elevation. All frames are designed for a seismic demand defined by single earthquake record in order to compare the performances and damage distributions used as design targets with the corresponding results of the nonlinear step by step analyses of the designed structures subjected to the same seismic demand. The performances and damage distributions calculated with these analyses show a good agreement with those postulated as targets.
机译:本文提出了一种基于损伤控制的基于位移的抗震设计方法,该方法将考虑性能水平的目标设置为位移,并由设计人员提出损伤分布。该方法基于基本结构动力学和与具有双线性行为的基本模式相关的参考单自由度系统的概念。根据此行为曲线的特征以及模态频谱分析的要求,计算出满足目标设计位移的结构的结构元件的刚度和强度。提出了该方法的公式以及目前认为具有实际意义的其他两种现有方法的公式。为了说明该方法的应用,使用了5个钢筋混凝土平面框架:高8层,17层和25层,高低8层和12层。所有框架都针对单一地震记录定义的地震需求进行设计,以便将用作设计目标的性能和破坏分布与承受相同地震需求的设计结构的非线性逐步分析的相应结果进行比较。通过这些分析计算出的性能和损坏分布与假定的目标显示出良好的一致性。

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