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Study on Train Derailment Control on Railway Steel Bridge

机译:铁路钢桥列车脱轨控制研究

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Several derailment accidents have happened on railway steel bridges,whose width-to-span ratios satisfy the limit values of lateral rigidity given by design code. However, derailment causes and preventive measures cannot be investigated by spot test. Consequently, the theory of energy random analysis for train derailment is used to analyze four derailment cases on steel bridge. The calculated results corresponding to the actual accident, manifests that the theory of derailment analysis above is effective for interpreting train derailment on bridge. In addition, it is testified that the scarcity of bridge lateral rigidity is a dominant cause resulting in derailment on bridge, and derailment accidents cannot be prevented with the existing limit value of lateral rigidity. In this paper, A new method is presented to analyze the limit value of bridge lateral rigidity for derailment prevention. The limit values of lateral rigidity for 32 m and 40 m long deck steel plate girder have been established as [5/L]=l/13.6 and 1/15.7 respectively, and that of 3><80 continuous truss bridge is established as [B/L] =1/12.1
机译:铁路钢桥发生了几次出轨事故,其宽宽比满足设计规范给出的横向刚度极限值。但是,脱轨的原因和预防措施无法通过现场测试来调查。因此,采用能量随机分析理论对列车脱轨进行了分析,分析了钢桥上的四种脱轨情况。实际事故的计算结果表明,以上的脱轨分析理论对于解释桥上的列车脱轨是有效的。另外,已经证明,桥梁横向刚度的缺乏是导致桥梁脱轨的主要原因,并且利用现有的横向刚度极限值不能防止脱轨事故。本文提出了一种新的方法来分析桥梁横向刚度极限值以防止脱轨。将32 m和40 m长的甲板钢板梁的侧向刚度极限值分别设置为[5 / L] = l / 13.6和1 / 15.7,将3> <80的连续桁架桥的侧向刚度极限值设置为[ [提单] = 1 / 12.1

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