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Assessment of FEMA356 nonlinear static procedure and modal pushover analysis for seismic evaluation of buildings

机译:FEMA356非线性静态程序评估和模态下垂分析用于建筑物的地震评估

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Nonlinear static analysis as an essential part of performance based design is now widely used especially at design offices because of its simplicity and ability to predict seismic demands on inelastic response of buildings. Since the accuracy of nonlinear static procedures (NSP) to predict seismic demands of buildings affects directly on the entire performance based design procedure, therefore lots of research has been performed on the area of evaluation of these procedures. In this paper, one of the popular NSP, FEMA356, is evaluated and compared with modal pushover analysis. The ability of these procedures to simulate seismic demands in a set of reinforced concrete (RC) buildings is explored with two level of base acceleration through a comparison with benchmark results determined from a set of nonlinear time history analyses. According to the results of this study, the modal pushover analysis procedure estimates seismic demands of buildings like inter story drifts and hinges plastic rotations more accurate than FEMA356 procedure.
机译:非线性静态分析作为基于性能的设计的重要组成部分,由于其简单性和能够预测建筑物对非弹性响应的地震需求的能力,现在尤其在设计事务所广泛使用。由于非线性静态程序(NSP)预测建筑物的地震需求的准确性直接影响整个基于性能的设计程序,因此,在这些程序的评估领域进行了大量研究。在本文中,对流行的NSP之一FEMA356进行了评估,并与模态推覆分析进行了比较。通过与一组非线性时程分析确定的基准结果进行比较,探索了这些程序在一组钢筋混凝土(RC)建筑中模拟地震需求的能力,并具有两个基本加速度水平。根据这项研究的结果,模态推覆分析程序比FEMA356程序更准确地估计建筑物的地震需求,例如层间漂移和铰链塑性旋转。

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