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Evaluation of seismic design provisions for a drift and inter-story drift relationship

机译:评估漂移和故事间漂移关系的地震设计规定

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Maximum roof drift (RD) and inter-story drift (ISD) demands are important seismic design parameters since they are used to evaluate seismic hazard levels and performance state for structures located in seismic regions. ISD demand, especially, is an important seismic design parameter for evaluation of seismic performance of both structural and non-structural elements. Therefore, it is important to have well established and accurate procedures to predict seismic displacement demands. In seismic design, both maximum inelastic RD and ISD demands are calculated using elastic displacements that are amplified by the same displacement amplification factor (Cd) to account for inelastic deformations. In other words, seismic provisions imply that both maximum RD and ISD demands are linearly related and proportional to their corresponding elastic design values. In addition, the higher mode-effects are neglected or assumed to have equal effect on both drift and ISD demands. In this study, the relationship between maximum RD and ISD demands has been investigated for 18 five-story parking garage structures, which had unbounded post-tensioned shear walls as lateral load resisting system, to investigate accuracy and applicability of code provisions for calculating inelastic seismic drift demands. The structures were located on stiff and soft clay soils in high seismic sites, and they were analyzed using nonlinear models of the structures and method of numerical integration to suites of six ground motion acceleration histories including both near-fault and far-fault motions. The ground motions were compatible with the design response spectrum for each site. The structures had unbounded post-tensioned shear walls as seismic force resisting system. The results show that the ratio of maximum inelastic RD and ISD for the structures is relatively constant, which is consistent with the code provisions. In addition, the computed maximum inelastic ISD demands of the structures were approximately 85% of those predicted using the code provisions. This indicates that the code provisions for predicting ISD demands are conservative.
机译:最大屋顶漂移(RD)和故事际漂移(ISD)需求是重要的地震设计参数,因为它们用于评估位于地震区的结构的地震危险水平和性能状态。特别是ISD需求,是用于评估结构和非结构元素的地震性能的重要地震设计参数。因此,重要的是具有详细建立和准确的程序来预测地震位移需求。在地震设计中,使用由相同的位移放大因子(CD)放大的弹性位移来计算最大非弹性RD和ISD要求,以解释无弹性变形。换句话说,地震规定意味着最大RD和ISD要求都与其相应的弹性设计值线性相关和成比例。此外,忽略较高的模式效应或假设对漂移和ISD需求具有相同的效果。在本研究中,已经研究了最大RD和ISD需求之间的关系,为18层五层停车车库结构进行了调查,该停车库结构具有无限的剪切墙作为横向载荷系统,以研究代码规定计算无弹性地震的准确性和适用性漂移需求。该结构位于高地震位点的刚性和软粘土土壤上,并使用数值整合的结构和方法的非线性模型进行分析,与六个地面运动趋势符合课程的套件,包括近故障和远端故障动作。地面运动与每个站点的设计响应谱兼容。该结构未被张紧后的剪力墙作为地震力抵抗系统。结果表明,对于结构的最大非弹性RD和ISD的比率是相对恒定的,这与代码规定一致。此外,结构的计算最大非弹性ISD要求约占使用代码规定预测的85%。这表明预测ISD要求的代码条款是保守的。

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