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Climate Change Adaptation for GeoRisks Mitigation of Railway Turnout Systems

机译:铁路营业局系统揭流揭露气候变化适应

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To enhance rail operational flexibility, railway turnouts are special track systems, which are designed to divert or change a train from a particular direction or a particular track onto other directions or other tracks. In reality, the railway turnout is commonly built on complex track geometry and graded terrain, which makes it one of the most unique and critical railway infrastructures. The physical constraints and complexity of turnout systems cause various risks and uncertainty in rail operations. This study critically analyses emerging geotechnical risks on turnout systems considering all aspects that can potentially result in impaired reliability, availability, maintainability and safety (RAMS) of the turnout systems. The annual derailment incidents have been evaluated to identify emerging risk factors. Not only do these incidents yield operational downtime and financial losses, but they also give rise to the casualties and sometimes the loss of lives across the world. In particular, the climate change risks on geotechnical aspects of the turnout systems have been highlighted. This paper thus presents how turnout components work as a system, the diversity of emerging risks considering natural hazards and global warming potential to the system. In addition, it highlights the climate change adaptation strategies for georisk mitigation of the railway turnout systems in order to improve RAMS of the railway turnouts and crossings, focusing on trackbed failures on the systems.
机译:为了提高轨道运行灵活性,铁路道路是特殊的轨道系统,设计用于从特定方向或特定轨道转移或改变在其他方向或其他轨道上的列车。实际上,铁路投票率通常是在复杂的轨道几何和分级地形上建造的,这使得它成为最独特和最关键的铁路基础设施之一。投票站系统的物理限制和复杂性导致轨道操作中的各种风险和不确定性。本研究批判性地分析了在考虑可能导致投灯系统的可靠性,可用性,可维护性和安全性(RAM)受损的所有方面的出营机系统的出现岩土电阻风险。已评估年度脱轨事件以确定新出现的风险因素。这些事件不仅会产生运营停工和金融损失,而且它们也会引发伤亡,有时候丧失世界各地的生命。特别是,突出了轨道系统岩土工程方面的气候变化风险。因此,本文提出了如何将营道组件作为系统的工作方式,考虑到系统的自然灾害和全球变暖潜力的新出现风险的多样性。此外,它凸显了铁路营道系统的岩手减轻气候变化适应策略,以改善铁路投票率和交叉的RAM,专注于系统上的追踪失败。

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