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首页> 外文期刊>Proceedings of the Institution of Civil Engineers. Transport >Mitigation of ancient coal mining hazards to overhead line equipment structures
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Mitigation of ancient coal mining hazards to overhead line equipment structures

机译:古代煤矿灾害对架空线路设备结构的缓解

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摘要

Subsidence and collapse of structures supporting overhead line equipment (OLE) due to legacy coal mining can be catastrophic during both the construction and operational phases, causing damage to construction plant, injuries and fatalities to the construction and maintenance workforce, failure of the track and disruption to the operational railway. When applied to linear railway schemes spanning considerable distances, industry guidelines for appraising and mitigating these mining hazards are overly conservative with a disproportionate cost. On phase 4 of the North West Electrification Project between Manchester Victoria and Euxton Junction, an innovative risk-based method was devised and implemented to identify and mitigate mining hazards to OLE structures. Formulation of these value-engineering solutions prevented programme drift and led to significant cost savings. Details of this methodology, including a detailed desk study, computational geomechanics, a well-targeted ground investigation, void remediation and real-time foundation monitoring, are discussed in this paper.
机译:支持架空线材设备(OLE)的结构沉降和崩溃由于遗留煤开采期间可能是灾难性的,在建筑和操作阶段,对建筑和维护劳动力的建筑厂,伤害和死亡造成损害,轨道和破坏到运行铁路。当应用于跨越相当距离的线性铁路方案时,用于评估和减轻这些采矿危害的行业准则对于不成比例的成本来说是过度保守的。在曼彻斯特维多利亚州北西北电气化项目的4阶段,设计了一种创新的基于风险的方法,并实施了识别和减轻对OLE结构的开采危害。制定这些价值工程解决方案防止了程序漂移并导致了显着的节省成本。本文讨论了该方法的详细信息,包括详细的桌面研究,计算地质力学,良好的地面调查,无效修复和实时基础监测。

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