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首页> 外文期刊>Journal of Performance of Constructed Facilities >Investigation of Effects of Nonlinear Static Analysis Procedures to Performance Evaluation on Low-Rise RC Buildings
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Investigation of Effects of Nonlinear Static Analysis Procedures to Performance Evaluation on Low-Rise RC Buildings

机译:非线性静力分析程序对高层RC建筑物性能评估的影响研究

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The aim of the study is to compare and evaluate structural response demands obtained from nonlinear static analysis procedures (NSPs) which are displacement coefficient method (DCM) recommended in FEMA 356 and capacity spectrum method (CSM) recommended in ATC 40. For these reasons, three of three-dimensional low-rise RC buildings with different characteristics are investigated. In order to determine nonlinear behavior of the buildings under lateral loads, the base shear-roof displacement relationships (capacity curves) are obtained by pushover analysis including P-delta effects. Then by considering four different seismic hazard levels, building performances are determined by using the CSM and by using from DCM results determined in a previous study. In order to determine performance levels of the buildings, maximum beam and column plastic rotation demands and maximum story drift demands are determined in the related maximum displacement demands. Plastic strains in the equivalent diagonal struts, representing the nonstruc-tural infill walls, are also determined, similarly. Comparing structural response quantities (such as plastic rotations, story drifts, etc.) obtained from the NSPs for considered low-rise RC buildings, effects of different NSPs in performance evaluations of the buildings are investigated comparatively, as well.
机译:这项研究的目的是比较和评估从非线性静态分析程序(NSP)获得的结构响应需求,这些程序是FEMA 356中推荐的位移系数法(DCM)和ATC 40中推荐的容量谱法(CSM)。研究了三种具有不同特征的三维低层钢筋混凝土建筑。为了确定建筑物在侧向荷载作用下的非线性行为,通过包括P-delta效应的推覆分析获得了基础剪力屋顶位移关系(承载力曲线)。然后,通过考虑四个不同的地震灾害等级,通过使用CSM和先前研究中确定的DCM结果来确定建筑物的性能。为了确定建筑物的性能水平,在相关的最大位移需求中确定了最大梁和柱塑性旋转需求和最大楼层漂移需求。类似地,还确定了代表非结构填充壁的等效对角撑杆中的塑性应变。比较从考虑的低层RC建筑的NSP获得的结构响应量(例如塑性旋转,故事漂移等),还比较研究了不同NSP在建筑物性能评估中的影响。

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