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A Detailed Comparison of Preliminary Seismic Vulnerability Assessment Methods for RC Buildings

机译:钢筋混凝土建筑地震易损性评估方法的详细比较

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Tier 2 (preliminary) evaluation methods seem to be efficient in determining seismic vulnerability of buildings in large building stocks because they can be used to determine the seismic performance of a single building when compared to Tier 1 evaluation methods (street survey). Besides, they require less time as opposed to detailed evaluation methods (Tier 3). Eleven preliminary vulnerability analysis procedures are compared considering the data of 192 buildings experienced either 2011 Van Earthquakes, 2003 Bingol Earthquake or 2002 Afyon Earthquake. Comparisons are made in terms of the number of parameters, influence of parameters on final seismic score, weighing factors of the parameters, the success rate of predicting the seismic performance of the examined buildings. Investigated procedures use at least four parameters and at most 22 parameters. Although number of stories have adverse effect on the seismic performance, concrete strength, area of shear walls and columns seem to have positive effect. Among the main parameters used in all procedures, area of shear walls is found to be the most influential parameter; however, concrete strength is one of the least effective parameters. As for the rate of correct vulnerability estimate of the 192 buildings, it is found that the best prediction rate belongs to Sucuoglu and Yazgan (in Wasti and Ozcebe (eds) Seismic assessment and rehabilitation of existing buildings, NATO science series (series IV: earth and environmental sciences), Kluwer Academic Publishers, London, 2003) with 79.2%. All the procedures except Ozcebe et al. (in Wasti and Ozcebe (eds) Seismic assessment and rehabilitation of existing buildings, NATO science series (series IV: earth and environmental sciences), Kluwer Academic Publishers, London, 2003) have correct estimate rate equal to or higher than 63%.
机译:第2层(初步)评估方法似乎可以有效地确定大型建筑物中建筑物的地震脆弱性,因为与第1层评估方法(街道调查)相比,它们可用于确定单个建筑物的抗震性能。此外,与详细的评估方法相比,它们需要的时间更少(方法3)。考虑到经历了2011年范本地震,2003年宾戈尔地震或2002年阿菲永地震的192栋建筑物的数据,比较了11个初步的脆弱性分析程序。在参数数量,参数对最终地震得分的影响,参数的权重因子,预测检查建筑物的抗震性能的成功率方面进行比较。研究过程至少使用四个参数,最多使用22个参数。尽管层数对地震性能有不利影响,但混凝土强度,剪力墙和柱的面积似乎有积极影响。在所有程序中使用的主要参数中,发现剪力墙的面积是最有影响力的参数。但是,混凝土强度是最无效的参数之一。关于192座建筑物的正确易损性估计率,发现最佳预测率属于Sucuoglu和Yazgan(在Wasti和Ozcebe(eds)中,对现有建筑物的地震评估和修复,北约科学丛书(系列四:地球)和环境科学),Kluwer学术出版社,伦敦,2003年),占79.2%。除Ozcebe等人以外的所有程序。 (在Wasti和Ozcebe(编辑)中,对现有建筑物的地震评估和修复,北约科学丛书(系列四:地球与环境科学),克鲁沃学术出版社,伦敦,2003年)的正确估计率等于或高于63%。

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