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Comparing of the effects of scaled and real earthquake records on structural response

机译:比较规模地震记录和真实地震记录对结构响应的影响

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摘要

Time history analyses have been preferred commonly in earthquake engineering area to determine earthquake performances of structures in recent years. Advances in computer technology and structural analysis have led to common usage of time history analyses. Eurocode 8 allows the use of real earthquake records as an input for linear and nonlinear time history analyses of structures. However, real earthquake records with the desired characteristics sometimes may not be found, for example depending on soil classes, in this case artificial and synthetic earthquake records can be used for seismic analyses rather than real records. Selected earthquake records should be scaled to a code design spectrum to reduce record to record variability in structural responses of considered structures. So, scaling of earthquake records is one of the most important procedures of time history analyses. In this paper, four real earthquake records are scaled to Eurocode 8 design spectrums by using SESCAP (Selection and Scaling Program) based on time domain scaling method and developed by using MATLAB, GUI software, and then scaled and real earthquake records are used for linear time history analyses of a six-storied building. This building is modeled as spatial by SAP2000 software. The objectives of this study are to put basic procedures and criteria of selecting and scaling earthquake records in a nutshell, and to compare the effects of scaled earthquake records on structural response with the effects of real earthquake records on structural response in terms of record to record variability of structural response. Seismic analysis results of building show that record to record variability of structural response caused by scaled earthquake records are fewer than ones caused by real earthquake records.
机译:近年来,时程分析一直是地震工程领域中首选的确定结构抗震性能的方法。计算机技术和结构分析的进步已导致时程分析的普遍使用。欧洲规范8允许使用真实地震记录作为结构线性和非线性时程分析的输入。但是,有时可能找不到具有所需特性的真实地震记录,例如,取决于土壤类别,在这种情况下,可以将人工和合成地震记录用于地震分析,而不是真实记录。选定的地震记录应按规范的设计范围进行缩放,以减少考虑的结构的结构响应中记录之间的差异。因此,地震记录的缩放是时间历史分析的最重要过程之一。本文采用时域标度方法,通过SESCAP(选择和标度程序)将四个真实地震记录按欧洲规范8设计谱进行标度,并使用MATLAB,GUI软件进行开发,然后按比例缩放和将真实地震记录用于线性六层建筑的时程分析。 SAP2000软件将此建筑建模为空间模型。这项研究的目的是概括地选择和缩放地震记录的基本程序和标准,并比较记录规模化地震记录对结构响应的影响与真实地震记录对结构响应的影响(从记录到记录)结构反应的可变性。建筑物的地震分析结果表明,按比例缩放的地震记录引起的记录到结构响应变化的记录要少于真实地震记录引起的记录。

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