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A modified response spectrum analysis procedure to determine nonlinear seismic demands of high-rise buildings with shear walls

机译:改进的响应谱分析程序,用于确定带有剪力墙的高层建筑的非线性地震需求

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摘要

The standard response spectrum analysis (RSA) procedure prescribed in various design codes is commonly used by practicing engineers to determine the seismic demands for structural design purpose. In this procedure, the elastic force demands of all significant vibration modes are first combined and then reduced by a response modification factor (R) to get the inelastic design demands. Recent studies, however, have shown that the response of higher vibration modes may experience much lower level of nonlinearity, and therefore, it may not be appropriate to reduce their demand contributions by the same factor. In this study, a modified RSA procedure based on equivalent linearization concept is presented. The underlying assumptions are that the nonlinear seismic demands can be approximately obtained by summing up the individual modal responses and that the responses of each vibration mode can be approximately represented by those of an equivalent linear SDF system. Using 3 high-rise buildings with reinforced concrete shear walls (20-, 33-, and 44-story high), the accuracy of this procedure is examined. The inelastic demands computed by the nonlinear response history analysis procedure are used as benchmark. The modified RSA procedure is found to provide reasonably accurate demand estimations for all case study buildings.
机译:实践工程师通常使用各种设计规范中规定的标准响应频谱分析(RSA)程序来确定用于结构设计目的的地震需求。在此过程中,首先将所有重要振动模式的弹力要求进行组合,然后将其减小一个响应修正因子(R),以获得非弹性设计要求。但是,最近的研究表明,较高振动模式的响应可能会经历低得多的非线性程度,因此,将它们的需求贡献减少相同的因素可能是不合适的。在这项研究中,提出了一种基于等效线性化概念的改进的RSA程序。基本假设是,可以通过对各个模态响应求和来近似获得非线性地震需求,并且每个振动模式的响应可以由等效线性SDF系统的响应近似表示。使用3个带有钢筋混凝土剪力墙的高层建筑(20层,33层和44层高),检查此过程的准确性。通过非线性响应历史分析程序计算出的非弹性需求被用作基准。发现改进的RSA程序可以为所有案例研究建筑物提供合理准确的需求估算。

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