...
首页> 外文期刊>Structural engineering international >Probability-Based Assessment and Optimised Maintenance Management of a Large Riveted Truss Railway Bridge
【24h】

Probability-Based Assessment and Optimised Maintenance Management of a Large Riveted Truss Railway Bridge

机译:大型铆钉桁架铁路桥基于概率的评估和优化维护管理

获取原文
获取原文并翻译 | 示例
           

摘要

This paper describes the techniques used in a probabilistic assessment of a riveted truss railway bridge. The probability-based classification of the structure serves as an example of how probability-based assessment of railway bridges can be applied to reduce maintenance costs through avoidance of unnecessary repair/rehabilitation and/or to optimise those repairs that are shown to be necessary. Probabilistic modelling of the critical limit states is presented for both the elements and the riveted joints of the structure. The statistical techniques used in modelling the train loads are presented, with modelling of the train load extreme value distributions (EVDs) based on the number of wagons loading the critical length of an influence line for the considered element/joint. Modelling of dynamic amplification of specific static sectional forces is performed as a function of the local or global influence length for the element or joint. Thereby, the significant conservatism found to be inherent in the deterministic assessment was avoided. The overall aim of the analysis was to achieve a higher load rating for element/joints of the structure than those resulting from the deterministic assessment. The sensitivity of the reliability index to the modelled stochastic variables is presented. Ultimately, the economic benefits to bridge owners/managers of performing a probabilistic assessment are apparent from the results, which provided a higher load rating for the critical elements/joints of the steel arch bridge than those achieved through deterministic assessment. The results of the probabilistic assessment were not able to demonstrate sufficient capacity in all the cases, but in those cases, as demonstrated in the paper, probabilistic modelling was used to plan the optimal repair strategy.
机译:本文介绍了用于铆接桁架铁路桥梁概率评估的技术。结构的基于概率的分类作为示例,说明了如何应用基于概率的铁路桥梁评估来避免不必要的维修/修复工作,从而减少维护成本和/或优化显示为必要的维修工作。给出了结构的元素和铆接接头的临界极限状态的概率模型。介绍了用于对列车载荷进行建模的统计技术,并基于加载考虑的元素/关节的影响线的临界长度的货车数量,对列车载荷的极值分布(EVD)进行了建模。根据元件或接头的局部或全局影响长度来执行特定静态截面力的动态放大建模。因此,避免了确定性评估中固有的重大保守主义。该分析的总体目标是,与确定性评估得出的结果相比,获得更高的结构元素/节点额定载荷。提出了可靠性指标对建模随机变量的敏感性。最终,从结果中可以明显看出,桥梁所有者/经理进行概率评估的经济利益,与确定性评估相比,钢拱桥的关键构件/节点的额定载荷更高。概率评估的结果不能在所有情况下都证明有足够的能力,但是在这些情况下,正如本文所证明的那样,概率模型被用来计划最佳修复策略。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号