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Seismic vulnerability assessment of RC skew bridges subjected to mainshock-aftershock sequences

机译:经历主震-余震序列的钢筋混凝土斜桥的地震易损性评估

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Due to the potential of strong aftershocks in the increase of vulnerability of bridges damaged under mainshocks, accurate evaluation of the structural performance during the seismic sequences is essential. This paper investigates the effect of different parameters such as skew angle of deck and direction of seismic excitation on the fragility curves of RC skew bridges subjected to mainshock and aftershocks. Fragility assessment is performed using a cloud analysis method subjected to a wide range of as-recorded sequences. First, a proper engineering demand parameter (EDP) which can result in the most probability of failure at bridges employed in this study is determined. The vulnerability of the bridge is then evaluated for different geometries representing various skew bridges and also for different incidence angles. Finally, comparisons are made with the fragilities in HAZUS. Results indicate that fragilities are significantly affected by aftershocks thus considering mainshock only is found to be unconservative. Comparison of median values for bridges with different skew angles across all damage states reveals that bridges with small skewness (almost straight geometry) can be less vulnerable than those with more skewness. Furthermore, fragilities are extremely sensitive to the direction of ground motion and therefore exclusive consideration of incidence angle can underestimate the seismic vulnerability in skew bridges. Results also show that the fragilities obtained based on aftershock and excitation orientation effects are more vulnerable than predicted by HAZUS and thus it seems necessary to revise damage functions for bridges in HAZUS in order to achieve a more accurate seismic risk assessment.
机译:由于强余震可能增加主震中受损桥梁的脆弱性,因此在地震序列中准确评估结构性能至关重要。本文研究了不同的参数,如甲板的偏角和地震激励的方向,对受主震和余震影响的钢筋混凝土斜桥的脆性曲线的影响。易损性评估是使用云分析方法进行的,该方法适用于各种记录的序列。首先,确定适当的工程需求参数(EDP),该参数可能导致本研究中使用的桥梁发生故障的可能性最大。然后针对代表各种斜桥的不同几何形状以及不同的入射角评估桥的脆弱性。最后,将HAZUS中的脆弱性进行了比较。结果表明,脆弱性受余震的影响很大,因此仅考虑主震是不保守的。在所有损伤状态下具有不同偏斜角的桥梁的中值的比较表明,具有较小偏斜度(几乎是直的几何形状)的桥梁比具有较大偏斜度的桥梁更不易损坏。此外,脆弱性对地震动的方向极为敏感,因此,仅考虑入射角会低估倾斜桥的地震脆弱性。结果还表明,基于余震和激励定向效应获得的脆弱性比HAZUS预测的脆弱性更高,因此似乎有必要修改HAZUS中桥梁的破坏功能以实现更准确的地震风险评估。

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