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Calculation and Simulation of High-speed Rail Connecting Ground Wire Coupled Response in Lightning Transient

机译:高速轨道连接地线耦合响应雷差的计算与仿真

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摘要

With the rapid development of China's high-speed rail construction, accidents caused by lightning are more frequent. How to achieve a more effective lightning protection and grounding is the urgent problem to be solved currently. A two-parallel-connecting-ground-wire transmission line model with the distributed parameter of electromagnetic coupling would be built in this paper. In this model, the connecting ground wire would be defined as horizontal infinite length grounding body. The own distribution parameters of segmented conductor and the parameters of the electromagnetic coupling between the parallel segmented conductors are calculated, based on the theory of electromagnetic field to select the appropriate segment size. Based on this transmission line model, the electric potential distribution of the different positions on the two parallel connecting ground wires is calculated by using the electromagnetic transient calculation software ATP-EMTP. Comparing the calculation results in this paper and the simulation results in the simulation software CDGES, it would demonstrate that the electromagnetic coupling distributed parameter transmission line model in this paper is consistent with the actual situation and it could be used to analyze the electromagnetic coupling effect between the two buried parallel connecting ground wires.
机译:随着中国高速铁路建设的快速发展,雷电引起的事故更频繁。如何实现更有效的雷电保护和接地是目前要解决的紧急问题。本文将建立具有电磁耦合分布参数的双行连接地线传输线模型。在该模型中,连接接地线将被定义为水平无限长度接地体。基于电磁场理论,计算分段导体的自身分布参数和平行分段导体之间的电磁耦合参数,以选择合适的段大小。基于该传输线模型,通过使用电磁瞬态计算软件ATP-EMTP计算两个平行连接接地线上的不同位置的电位分布。比较计算结果在本文中和仿真结果中的仿真结果在仿真软件压缩中,本文中的电磁耦合分布式参数传输线模型与实际情况一致,可用于分析电磁耦合效果两个埋没平行的连接接地线。

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