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Seismic risk assessment of RC curved bridges through fragility curves

机译:通过脆弱曲线的RC弯曲桥梁的地震风险评估

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It is of great importance that traffic network is still functioning in post- earthquake period, so that interventions in emergency situations are not delayed. Bridges are part of the traffic system that can be considered as critical for adequate post-earthquake response. Their seismic response often dominate the response and reliability of overall transportation system, so special attention should be given to risk assessment for these structures. In seismic vulnerability and risk assessment bridges are often classified as regular or irregular structures, dependant on their configuration. Curved bridges are considered as irregular and unexpected behaviour during seismic excitation is noticed in past earthquake events. Still there are an increasing number of these structures especially in densely populated urban areas since curved configuration is often suitable to accommodate complicated location conditions. In this paper special attention is given to seismic risk assessment of curved reinforce concrete bridges through fragility curves. Procedure for developing fragility curves is described as well as influence of radius curvature on their seismic vulnerability is investigated. Since vulnerability curves provide probability of exceedance of certain damage state, four damage states are considered: near collapse, significant damage, intermediate damage state, onset of damage and damage limitation. As much as possible these damage states are related to current European provisions. Radius of horizontal curvature is varied by changing subtended angle: 25 °, 45 ° and 90 °. Also one corresponding straight bridge is analysed. Nonlinear static procedure is used for developing of fragility curves. It was shown that probability of exceedance of certain damage states is increased as subtended angle is increased. Also it is determined that fragility of curved bridges can be related to fragility of straight counterparts what facilitates seismic evaluation of seismic vulnerability of curved bridges structures.
机译:交通网络在地震期间仍在运行是非常重要的,因此紧急情况下的干预措施不会延迟。桥梁是交通系统的一部分,可以被视为对充足的地震后响应至关重要。他们的地震反应往往主导了整个运输系统的反应和可靠性,因此应特别注意这些结构的风险评估。在地震脆弱性和风险评估桥通常归类为常规或不规则结构,取决于它们的配置。在过去的地震事件中,弯曲的桥被认为是由于地震激发期间的不规则和意外行为。仍然存在越来越多的这些结构,特别是在密集的城市区域,因为弯曲配置通常适合适应复杂的位置条件。本文通过脆弱曲线特别注意弯曲加固混凝土桥的地震风险评估。描述了开发脆性曲线的步骤,以及对半径曲率对其地震脆性的影响进行了研究。由于漏洞曲线提供了超过某些损坏状态的概率,因此考虑了四种损害状态:近崩溃,显着损害,中间损伤状态,损坏和损坏的发作。尽可能多,这些损害国家与当前的欧洲规定有关。水平曲率半径通过变化的边角:25°,45°和90°而变化。还分析了一个相应的直桥。非线性静态程序用于开发脆弱曲线。结果表明,随着下式角度增加,超越某些损伤状态的概率增加。此外,确定弯曲桥的脆弱性可以与直对应物的脆弱性有关,其中有助于弯曲桥梁结构的地震脆性的地震评价。

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