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Study on Vulnerability Assessment of Cable-stayed Bridges

机译:缆绳桥梁脆弱性评估研究

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摘要

A structure is vulnerable if any small damage will trigger disproportionately large consequences, even leads to a cascade of failure events and progressive collapse. The structural vulnerability performance depends upon the properties, locations of damaged components and the way they are connected to the rest of the structure. In this paper, progressive failure analysis method is utilized for the vulnerability study of cable-stayed bridges. The goal of it is to identify various failure scenarios initiated from the sudden damage of some bridge components. Based on the analysis results, assuming that the behaviors of damaged components can be modeled using plastic hinges, the hybrid element model is introduced to derived the modified stiffness matrix considering both of the effects of bending moments and shear forces. Furthermore, the vulnerability index in terms of the nodal stiffness degradation can be analytically quantified, which could be regarded as an index to determine the bridge failure consequences, so that the vulnerability distribution graph for the whole bridge can be sketched to evaluate the bridge performances from vulnerability viewpoints. This quantitative approach is applicable for structural evaluation under unforeseen attack and illustrated on a typical long-span cable-stayed bridge.
机译:如果任何小的伤害都会引发不成比例的伤害,结构很容易受到影响,甚至导致失败事件的级联和逐步崩溃。结构漏洞性能取决于属性,损坏部件的位置以及它们连接到其余结构的方式。在本文中,逐步故障分析方法用于缆绳座桥的脆弱性研究。它的目标是识别从一些桥梁组件的突然损坏发起的各种故障情景。基于分析结果,假设可以使用塑料铰链建模损坏部件的行为,引入混合元件模型以考虑弯曲时刻和剪切力的两种效果来衍生修改的刚度矩阵。此外,可以分析节点刚度降解的脆弱性指数,可以被视为确定桥梁故障后果的指数,从而可以勾勒出整个桥的漏洞分布图以评估桥接性能漏洞视点。这种定量方法适用于在不可预见的攻击下的结构评估,并在典型的长跨度斜拉桥上示出。

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