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Evaluation of the seismic behavior factor of reinforced concrete frame structures based on comparative analysis between non-linear static pushover and incremental dynamic analyses

机译:基于非线性静力推覆和增量动力分析对比分析的钢筋混凝土框架结构抗震性能评估

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摘要

The seismic behavior factor R (noted q in the european seismic design code, the Eurocode 8) of reinforced concrete frame structures is evaluated based on comparative analysis between non-linear static pushover and non-linear incremental dynamic analyses. For this purpose, three-, six-, and nine-storey reinforced concrete frame structures, considered as low-, medium-, and high-rise frame, respectively, were designed according to reinforced concrete code BAEL 91 and Algerian seismic code RPA 99/Version 2003. Non-linear static pushover analysis using inverted triangular loading pattern and incremental dynamic analysis using a set of seven time-history earthquake records were carried out to compute the R factor components, such as ductility and overstrength factors, with the consideration of failure criteria at both member and structural levels. The results obtained by non-linear static pushover and incremental dynamic analyses are compared. According to the analysis results, it is observed that in the case of non-linear static pushover analysis, the value of the seismic behavior factor decreases as the number of stories increases, whereas in the case of non-linear incremental dynamic analysis, the trend observed is not the same: the value of the seismic behavior factor increases as the number of stories increases. This result shows that the value of the seismic behavior factor depends, among others parameters, on the height of a structure, which parameter is not taken into account by the seismic design codes. In the light of the information obtained from incremental dynamic analyses, it is observed that the value of the seismic behavior factor adopted by the seismic design code RPA 99/Version 2003 is overestimated, especially for low-rise frame structure. This paper also provides conclusions and the limitations of this study.
机译:在对非线性静力推覆和非线性增量动力分析进行比较分析的基础上,对钢筋混凝土框架结构的抗震性能因子R(在欧洲抗震设计规范中标注为q,欧洲规范为8)进行了评估。为此,根据钢筋混凝土规范BAEL 91和阿尔及利亚地震规范RPA 99设计了分别为低,中和高层建筑的三层,六层和九层钢筋混凝土框架结构。 / 2003年版。进行了使用倒三角形加载模式的非线性静态推覆分析,并使用一组七个时间历史地震记录进行了增量动力分析,以计算R因子分量,例如延性和超强度因子,同时考虑到成员和结构级别的失效标准。比较了通过非线性静态推覆和增量动态分析获得的结果。根据分析结果可以看出,在非线性静力推覆分析的情况下,地震行为因子的值随层数的增加而减小,而在非线性增量动力分析的情况下,趋势随层数的增加而减小。观察到的结果是不同的:随着层数的增加,地震行为因子的值也会增加。该结果表明,抗震性能因子的值除其他参数外还取决于结构的高度,抗震设计规范未考虑该参数。根据从增量动力分析中获得的信息,可以看出,抗震设计代码RPA 99 / Version 2003采用的地震行为因子的值被高估了,尤其是对于低矮框架结构。本文还提供了结论和本研究的局限性。

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