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Lessons from incidents attributable to the uncertainties in bridge launching illustrated by a case study

机译:案例研究说明了事故的教训,这些事故可归因于桥梁发射的不确定性

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Like other competitive bridge erection techniques, incremental launching is a highly vulnerable process that entails considerable risks to persons. In steel and composite bridges, in particular, patch loading and other mechanisms that induce instability must be avoided. Considerable uncertainties are associated with both resistances and support reactions during launch operations due to the broad range of factors involved. Nonlinear finite element (FE) analysis is very useful for the explicit verification of both local and overall system stability during steel structure launching. Monitoring, in turn, may be a very powerful tool for reducing the risks associated with such operations. Further research is needed both to establish safety levels for temporary structures and on-site activities and to develop a suitable design format for nonlinear FE analysis. However, in everyday practice, engineers and builders must deal with much more basic problems, often related to the interaction between the structure under construction and the ancillary resources used, as exemplified in the case study described in this contribution. The lessons learnt from such incidents are extremely useful for improving the strategies presently in place to reduce construction-related risks.
机译:像其他竞争性桥梁架设技术一样,增量发射是一个高度脆弱的过程,给人员带来相当大的风险。特别是在钢桥和复合桥中,必须避免补丁加载和其他引起不稳定性的机制。由于涉及的因素范围广泛,因此发射作业期间的阻力和支撑反应都存在相当大的不确定性。非线性有限元(FE)分析对于钢结构发射过程中局部和整体系统稳定性的显式验证非常有用。反过来,监视可能是减少与此类操作相关的风险的非常强大的工具。为建立临时结构和现场活动的安全等级,以及为非线性有限元分析开发合适的设计格式,都需要进一步的研究。但是,在日常实践中,工程师和建筑商必须处理更多基本问题,这些问题通常与正在施工的结构与所使用的辅助资源之间的相互作用有关,如本贡献中所述的案例研究所示。从此类事件中汲取的经验教训对于改进当前降低建筑相关风险的策略非常有用。

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