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Effects of earthing systems on stray current for corrosion and safety behaviour in practical metro systems

机译:在实际的地铁系统中,接地系统对杂散电流的腐蚀和安全行为的影响

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摘要

Running rails are used as the return path for the train current in most DC electrified rail transit systems. The resultant rail voltage causes stray current to return to the DC supply source via other paths, such as nearby metallic infrastructure. Stray current is the main cause of corrosion in metallic parts located in the railway proximity. This study reviews various earthing schemes including thyristor earthed, diode earthed, floating and solidly earthed and corrosion phenomenon in DC railway traction systems. Then, based on simulations, a comparative study of safety and corrosive effects of the stray current, produced by various earthing schemes is presented. The study is part of the concept designed to control the stray current at Tehran Metro Line 3. Results of the study have been validated by simulation studies using a multi-train simulation software tool and the system data from Tehran Metro Line 3. The study shows some interesting findings such as corrosion damage increases near traction substations.
机译:在大多数直流电气化轨道交通系统中,滑轨被用作列车电流的返回路径。产生的电源电压会导致杂散电流通过其他路径(例如附近的金属基础设施)返回直流电源。杂散电流是位于铁路附近的金属零件腐蚀的主要原因。这项研究回顾了各种接地方案,包括晶闸管接地,二极管接地,浮动和固体接地以及直流铁路牵引系统中的腐蚀现象。然后,在模拟的基础上,对各种接地方案产生的杂散电流的安全性和腐蚀性进行了比较研究。这项研究是设计用来控制德黑兰地铁3号线杂散电流的概念的一部分,该研究的结果已通过使用多轨模拟软件工具的仿真研究和来自德黑兰地铁3号线的系统数据进行了验证。牵引变电站附近一些有趣的发现(例如腐蚀损坏)增加了。

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