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The Assessment and Retrofit of a Vulnerable Pin Hanger Bridge in the City of Calgary

机译:卡尔加里市易受伤害的吊销桥的评估和改造

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Cushing Bridge is located on a major east-west truck route within the City of Calgary's southeast industrial area and is a vital link in the City and Provincial road network. The bridge consists of westbound and eastbound structures, constructed in 1956 and 1965 respectively. The structures are generally similar and consist of three spans: two anchor spans and a central suspended span. The suspended spans are connected to the anchor spans using pin and hanger assemblies and provide a classic case of a major bridge with non-redundant, fracture-critical pin and hanger supports. The City recognized that the structures were vulnerable to sudden failure of the pin hanger supports and retained Associated Engineering to study, analyze and develop retrofit options to manage the risk by retrofitting the pin and hanger supports. Project scope also included visual inspection and non-destructive testing of the pin and hanger connections and determination of the critical pin and hanger assemblies' residual fatigue life. The study established that the full fatigue design life of the hangers had been exhausted. The study further concluded that vulnerability of the pin hanger connection was exacerbated by corrosion and "freezing" of the pin hanger connections, high stresses in the hangers, and the significant volume of truck traffic on the bridge. The study recommended that best value risk mitigation would be achieved through immediate re-articulation of the existing girders by connecting the suspended span to the anchor spans and creating a continuous 3-span girder system. Retrofit work commenced in the spring of 2011 with completion in the fall.
机译:库欣桥位于卡尔加里市东南工业区内的一条主要的东西向卡车路线上,是该市和省级道路网中的重要纽带。该桥由西行和东行结构组成,分别于1956年和1965年建造。结构大致相似,由三个跨度组成:两个锚定跨度和一个中央悬挂跨度。悬吊式跨度通过销钉和吊架组件连接到锚固跨度,并提供具有非冗余,断裂关键性销钉和吊架支撑的大型桥梁的经典案例。纽约市认识到这些结构容易受到针吊架支撑件突然失效的影响,因此,相关工程部门继续研究,分析和开发翻新方案,以通过改型销钉和吊架支撑件来管理风险。项目范围还包括销和吊架连接的外观检查和非破坏性测试,以及确定关键的销和吊架组件的剩余疲劳寿命。该研究确定了衣架的全部疲劳设计寿命已用尽。该研究进一步得出结论,由于销架连接的腐蚀和“冻结”,吊架中的高应力以及桥上大量卡车的通行,加剧了销架连接的脆弱性。研究建议,通过将悬臂跨度连接到锚跨度并创建一个连续的三跨度跨度梁系统,立即对现有的跨度梁进行重新铰接,可以实现最佳价值风险的缓解。改造工作于2011年春季开始,秋季完成。

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