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Assessment of redundancy protocols for short-span steel truss bridges

机译:评估短跨度钢桁架桥的冗余协议

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Owner agencies and state transportation departments have expressed concern over costly inspection requirements for short-span steel truss bridges due to the potential designation of members as fracture-critical. This designation has a direct impact on future implementation of these structures as well as perceived inherent safety in existing bridges of this type. Throughout the years, researchers have developed methodologies to determine the degree of load-path redundancy that such structures exhibit, which, once employed, may eliminate the potential for fracture-critical designation, alleviating inspection costs and promoting these types of structures in highway bridge applications. This paper presents the results of a highly accurate, nonlinear finite element investigation of the load-path redundancy of a representative short-span steel truss bridge, which is benchmarked against physical load testing of the bridge. Once validated, the model will undergo a series of severed member analysis to determine the inherent levels of load-path redundancy.
机译:业主机构和州交通运输部门对短跨度钢桁架桥梁的检查要求高昂表示担忧,原因是其成员可能会被指定为关键裂缝。该名称直接影响这些结构的未来实施以及现有此类桥梁的固有安全性。多年来,研究人员已经开发出确定这种结构所表现出的载荷路径冗余度的方法,一旦采用该结构,就可以消除潜在的关键裂缝设计,减轻检查成本并在公路桥梁应用中推广这类结构。本文介绍了代表性的短跨度钢桁架桥的荷载路径冗余度的高精度,非线性有限元研究的结果,该结果以桥梁的物理荷载测试为基准。一旦通过验证,该模型将进行一系列的切分成员分析,以确定负载路径冗余的固有水平。

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