首页> 外文期刊>Journal of bridge engineering >Vulnerability Sensitivity of Curved Precast-Concrete I-Girder Bridges with Various Configurations Subjected to Multiple Ground Motions
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Vulnerability Sensitivity of Curved Precast-Concrete I-Girder Bridges with Various Configurations Subjected to Multiple Ground Motions

机译:受到多种地面运动影响的各种配置的弯曲预制混凝土工字梁桥的脆弱性敏感性

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Curved bridges provide a vital benefit to the nation's infrastructure system by allowing for accessibility and ease of transition in irregular highway layouts. Curved bridges using straight prestressed concrete I-girders with curved decking can fulfill this need. A number of such bridges have been constructed both in seismically and nonseismically active zones. This paper determines the seismic vulnerability sensitivity of the bridges with vastly different configurations via use of conventional fragility-assessment techniques. Experimental design established a statistical setting using core variables to produce a wide variety of hypothetical bridges to represent both as-built and proposed bridge configurations. Each bridge was designed following the strength and serviceability limit states stipulated by current bridge design specifications. As part of the sensitivity analysis, nonlinear time history analyses (NLTHAs) using numerous synthetic ground motions were performed to establish seismic demands on critical bridge components. Using probabilistic seismic demand models (PSDMs), component and system-level fragility curves were generated. The resulting fragility data were scrutinized to explore the effects of the different design parameters on seismic vulnerability of the bridges. The results indicate that the shorter-span bridges with a tighter radius of curvature are less sensitive to seismic excitations than those with straighter decking, indicating that a span length-to-radius of curvature ratio (S/R) for both single and multispan bridges is statistically determined to be the most influential parameter. (C) 2016 American Society of Civil Engineers.
机译:弯曲的桥梁通过允许在不规则的高速公路布局中使用和易于过渡,为国家的基础设施系统提供了至关重要的好处。使用带有弯曲铺面的直的预应力混凝土工字梁的弯曲桥可以满足这一需求。在地震和非地震活动区都建造了许多这样的桥梁。本文通过使用传统的易损性评估技术,确定了具有极大不同配置的桥梁的地震易损性敏感性。实验设计建立了使用核心变量的统计设置,以生成各种各样的假设桥梁,以代表既建桥梁和拟议桥梁。每座桥梁的设计均遵循当前桥梁设计规范规定的强度和使用寿命极限状态。作为敏感性分析的一部分,进行了使用大量合成地面运动的非线性时程分析(NLTHA),以建立关键桥梁构件的地震要求。使用概率地震需求模型(PSDM),生成了组件和系统级的脆性曲线。仔细检查所得的脆性数据,以探索不同设计参数对桥梁地震易损性的影响。结果表明,曲率半径较小的短跨度桥梁比平直的桥梁对地震激励的敏感性较小,这表明单跨和多跨桥梁的跨度长度与曲率半径之比(S / R)统计上被确定为最具影响力的参数。 (C)2016年美国土木工程师学会。

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