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Multi-angle, multi-damage fragility curves for seismic assessment of bridges

机译:用于桥梁地震评估的多角度,多损伤脆性曲线

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The scope of this study is to investigate the effect of the direction of seismic excitation on the fragility of an already constructed, 99-m-long, three-span highway overpass. First, the investigation is performed at a component level, quantifying the sensitivity of local damage modes of individual bridge components (namely, piers, bearings, abutments, and footings) to the direction of earthquake excitation. The global vulnerability at the system level is then assessed for a given angle of incidence of the earthquake ground motion to provide a single-angle, multi-damage probabilistic estimate of the bridge overall performance. A multi-angle, multi-damage, vulnerability assessment methodology is then followed, assuming uniform distribution for the angle of incidence of seismic waves with respect to the bridge axis. The above three levels of investigation highlight that the directivity of ground motion excitation may have a significant impact on the fragility of the individual bridge components, which shall not be a priori neglected. Most importantly, depending on the assumptions made for the component to the system level transition, this local sensitivity is often suppressed. It may be therefore necessary, based on the ultimate purpose of the vulnerability or the life cycle analysis, to obtain a comprehensive insight on the multiple damage potential of all individual structural and foundation components under multi-angle excitation, to quantify the statistical correlation among the distinct damage modes and to identify the components that are both most critical and sensitive to the direction of ground motion and carefully define their limit states which control the predicted bridge fragility. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:本研究的范围是研究地震激励的方向对已经建造的99米长,三跨高速公路立交桥的脆弱性的影响。首先,在构件级别进行调查,以量化各个桥梁构件(即墩,支座,桥台和地基)对地震激发方向的局部破坏模式的敏感性。然后针对给定的地震地面运动入射角评估系统级别的全局脆弱性,以提供桥梁整体性能的单角度,多损伤概率估计。然后采用多角度,多损伤,易损性评估方法,假设地震波相对于桥梁轴线的入射角均匀分布。上面三个层次的研究表明,地震动激励的方向性可能会对各个桥梁构件的脆弱性产生重大影响,这不应被先验地忽略。最重要的是,根据对组件进行系统级转换的假设,通常会抑制这种局部敏感性。因此,可能有必要基于脆弱性或生命周期分析的最终目的,全面了解多角度激发下所有单个结构和基础构件的多重破坏潜能,以量化各因素之间的统计相关性。不同的破坏模式,并确定对地面运动方向最关键和最敏感的组件,并仔细定义其极限状态,以控制预测的桥梁易损性。版权所有(c)2015 John Wiley&Sons,Ltd.

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