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Performance-based prioritisation of fire protection for steel girder overpasses in a complex highway interchange

机译:复杂公路交汇处钢梁跨越钢梁桥梁桥梁的优先级

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摘要

Fire events due to tanker truck accidents have caused significant damage to numerous steel girder overpass bridges over the last several decades. Due to the limited availability of funding for public infrastructure, engineers must tailor hazard mitigation according to vulnerability and consequence, thereby maximising the cost/benefit of these investments. The authors have developed a fast-running analytical framework to evaluate steel-supported bridges for fire exposure. In this article, that computationally efficient tool is leveraged to conduct a large set of analyses over a complex highway interchange for a realistic and randomised series of fire scenarios. Fire hazard input parameters (e.g. combustion properties, spill geometry, etc) as well as the fire location within the interchange are randomly selected based on user-defined probability functions. Traffic data are used to determine which bridge spans may be most susceptible to fire and which pose the greatest consequences if they fail or lose functionality. The results of these analyses are used to develop a performance envelope that indicates the risk of fire-induced damage, as well as the effectiveness of potential fire protection strategies.
机译:由于油轮卡车事故导致的火灾事件对过去几十年来造成了对众多钢梁立交桥造成的重大损坏。由于公共基础设施的资金可用性有限,工程师必须根据脆弱性和后果定制危险,从而最大化这些投资的成本/益处。作者开发了一种快速运行的分析框架,可评估钢材支撑的桥梁以进行火灾曝光。在本文中,利用计算有效的工具,在复杂的公路交流中进行大量分析,以获得一系列现实和随机的一系列火灾情景。火灾危险输入参数(例如燃烧属性,溢出几何等)以及交换机内的火灾位置是基于用户定义的概率函数随机选择的。交通数据用于确定哪个桥跨度最容易发生火灾,并且如果失败或失去功能,则构成最大的后果。这些分析的结果用于开发表现出造成火灾损伤风险的性能包络,以及潜在的消防策略的有效性。

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