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Assessment of current nonlinear static procedures for seismic evaluation of buildings

机译:当前用于建筑物地震评估的非线性静态程序的评估

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An essential and critical component of evolving performance-based design methodologies is the accurate estimation of seismic demand parameters. Nonlinear static procedures (NSPs) are now widely used in engineering practice to predict seismic demands in building structures. While seismic demands using NSPs can be computed directly from a site-specific hazard spectrum, nonlinear time-history (NTH) analyses require an ensemble of ground motions and an associated probabilistic assessment to account for aleatoric variability in earthquake recordings. Despite this advantage, simplified versions of NSP based on invariant load patterns such as those recommended in ATC-40 and FEMA-356 have well-documented limitations in terms of their inability to account for higher mode effects and the modal variations resulting from inelastic behavior. Consequently, a number of enhanced pushover procedures that overcome many of these drawbacks have also been proposed. This paper investigates the effectiveness of several NSPs in predicting the salient response characteristics of typical steel and reinforced concrete (RC) buildings through comparison with benchmark responses obtained from a comprehensive set of NTH analyses. More importantly, to consider diverse ground motion characteristics, an array of time-series from ordinary far-fault records to near-fault motions having fling and forward directivity effects was employed. Results from the analytical study indicate that the Adaptive Modal Combination procedure predicted peak response measures such as inter-story drift and component plastic rotations more consistently than the other NSPs investigated in the study.
机译:不断发展的基于性能的设计方法学的基本和关键组成部分是地震需求参数的准确估算。非线性静态程序(NSP)现在在工程实践中广泛用于预测建筑结构的地震需求。尽管可以直接从特定地点的灾害谱中计算出使用NSP的地震需求,但是非线性时程(NTH)分析需要整体的地震动和相关的概率评估,才能说明地震记录中的偶然变化。尽管有此优势,但基于不变负载模式的NSP简化版本(如ATC-40和FEMA-356中推荐的简化版本)在无法说明较高的模态效应和非弹性行为导致的模态变化方面仍存在有据可查的限制。因此,已经提出了许多克服许多这些缺点的增强的推倒程序。通过与一组全面的NTH分析获得的基准响应进行比较,本文研究了几种NSP在预测典型钢结构和钢筋混凝土(RC)建筑的显着响应特性方面的有效性。更重要的是,为了考虑不同的地面运动特征,采用了从普通的远断层记录到具有跳动和前向指向性影响的近断层运动的一系列时间序列。分析研究的结果表明,与研究中研究的其他NSP相比,自适应模态组合程序预测的峰值响应措施(例如层间漂移和组件塑性旋转)更加一致。

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