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Envelope-based pushover analysis procedure for the approximate seismic response analysis of buildings

机译:基于包络的推覆分析程序,用于建筑物的近似地震反应分析

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摘要

An envelope-based pushover analysis procedure is presented that assumes that the seismic demand for each response parameter is controlled by a predominant system failure mode that may vary according to the ground motion. To be able to simulate the most important system failure modes, several pushover analyses need to be performed, as in a modal pushover analysis procedure, whereas the total seismic demand is determined by enveloping the results associated with each pushover analysis. The demand for the most common system failure mode resulting from the 'first-mode' pushover analysis is obtained by response history analysis for the equivalent 'modal-based' SDOF model, whereas demand for other failure modes is based on the 'failure-based' SDOF models. This makes the envelope-based pushover analysis procedure equivalent to the N2 method provided that it involves only 'first-mode' pushover analysis and response history analysis of the corresponding 'modal-based' SDOF model. It is shown that the accuracy of the approximate 16th, 50th and 84th percentile response expressed in terms of IDA curves does not decrease with the height of the building or with the intensity of ground motion. This is because the estimates of the roof displacement and the maximum storey drift due to individual ground motions were predicted with a sufficient degree of accuracy for almost all the ground motions from the analysed sets.
机译:提出了一种基于包络的推覆分析程序,该程序假定每个响应参数的地震需求由主要的系统故障模式控制,该模式可能会根据地震动而变化。为了能够模拟最重要的系统故障模式,需要像模态推覆分析程序一样执行几次推覆分析,而总地震需求是通过包封与每个推覆分析相关的结果来确定的。通过对“基于模式”的等效SDOF模型的响应历史分析,可以得出“第一模式”下推分析导致的最常见系统故障模式的需求,而其他故障模式的需求则基于“基于故障的模式”。 SDOF模型。这使得基于包络的推覆分析过程等同于N2方法,条件是该过程仅涉及相应的“基于模式”的SDOF模型的“第一模式”推覆分析和响应历史分析。结果表明,以IDA曲线表示的第16,第50和第84个百分位数响应的准确性不会随着建筑物的高度或地面运动的强度而降低。这是因为,对于来自分析组的几乎所有地面运动,都以足够的准确度预测了由于个别地面运动而导致的屋顶位移和最大楼层漂移的估计。

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