Characteristics of pantograph-catenary arc under low air pressure and strong airflow
Pantograph-catenary arc fault is the primary factor threatening the stability of the power transmission for high-speed railway. The motion characteristics of the pantograph-catenary arc under low air pressure and strong airflow is significantly different from the case under atmospheric pressure. In...
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sg-ntu-dr.10356-1643412023-01-17T02:44:28Z Characteristics of pantograph-catenary arc under low air pressure and strong airflow Xu, Zhilei Gao, Guoqiang Wei, Wenfu Yang, Zefeng Xie, Wenhan Dong, Keliang Ma, Yaguang Yang, Yan Wu, Guangning School of Electrical and Electronic Engineering Engineering::Electrical and electronic engineering Arc Column Lower Air Pressure Pantograph-catenary arc fault is the primary factor threatening the stability of the power transmission for high-speed railway. The motion characteristics of the pantograph-catenary arc under low air pressure and strong airflow is significantly different from the case under atmospheric pressure. In this paper, an experimental platform of pantograph-catenary arc was built to investigate arc root position-time and arc column longitudinal drift height-time characteristic curves under different air pressures and airflow velocites. Via analysing the corresponding results, it can be found that there are different arc root–arc column traction mechanisms at different stages of arc development. The arcing time and arc root stagnation time under low air pressure are significantly longer than the case under atmospheric pressure, resulting in more serious electrode ablation. The arc column longitudinal drift velocity and height are greater with the increase of airflow velocity. Two typical irregular arc motion phenomena—arc root jumping and arc reignition are observed. To clarify the internal mechanism of the above phenomenon, a magnetohydrodynamics (MHD) model of the pantograph-catenary arc was lauched, the influence mechanism of the pantograph-catenary arc temperature and voltage are studied, and the physical process of arc temperature oscillation is analysed. The research results provide theoretical support for arc protection in high-altitude areas. Published version Funding Information: NEEC project, Grant/Award Number: NEEC‐2018‐B06; National Natural Science Foundation of China, Grant/Award Numbers: 51807167, 51837009, 51922090, 52077182, U19A20105; Science and Technology Project of Headquarter of SGCC, Grant/Award Number: SGTYHT/19‐JS‐215. 2023-01-17T02:44:28Z 2023-01-17T02:44:28Z 2022 Journal Article Xu, Z., Gao, G., Wei, W., Yang, Z., Xie, W., Dong, K., Ma, Y., Yang, Y. & Wu, G. (2022). Characteristics of pantograph-catenary arc under low air pressure and strong airflow. High Voltage, 7(2), 369-381. https://dx.doi.org/10.1049/hve2.12180 2397-7264 https://hdl.handle.net/10356/164341 10.1049/hve2.12180 2-s2.0-85122017783 2 7 369 381 en High Voltage © 2021 The Authors. High Voltage published by John Wiley & Sons Ltd on behalf of The Institution of Engineering and Technology and China Electric Power Research Institute. This is an open access article under the terms of the Creative Commons Attribution-NonCommercial‐NoDerivs License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made. application/pdf |
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Engineering::Electrical and electronic engineering Arc Column Lower Air Pressure Xu, Zhilei Gao, Guoqiang Wei, Wenfu Yang, Zefeng Xie, Wenhan Dong, Keliang Ma, Yaguang Yang, Yan Wu, Guangning Characteristics of pantograph-catenary arc under low air pressure and strong airflow |
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Pantograph-catenary arc fault is the primary factor threatening the stability of the power transmission for high-speed railway. The motion characteristics of the pantograph-catenary arc under low air pressure and strong airflow is significantly different from the case under atmospheric pressure. In this paper, an experimental platform of pantograph-catenary arc was built to investigate arc root position-time and arc column longitudinal drift height-time characteristic curves under different air pressures and airflow velocites. Via analysing the corresponding results, it can be found that there are different arc root–arc column traction mechanisms at different stages of arc development. The arcing time and arc root stagnation time under low air pressure are significantly longer than the case under atmospheric pressure, resulting in more serious electrode ablation. The arc column longitudinal drift velocity and height are greater with the increase of airflow velocity. Two typical irregular arc motion phenomena—arc root jumping and arc reignition are observed. To clarify the internal mechanism of the above phenomenon, a magnetohydrodynamics (MHD) model of the pantograph-catenary arc was lauched, the influence mechanism of the pantograph-catenary arc temperature and voltage are studied, and the physical process of arc temperature oscillation is analysed. The research results provide theoretical support for arc protection in high-altitude areas. |
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School of Electrical and Electronic Engineering |
author_facet |
School of Electrical and Electronic Engineering Xu, Zhilei Gao, Guoqiang Wei, Wenfu Yang, Zefeng Xie, Wenhan Dong, Keliang Ma, Yaguang Yang, Yan Wu, Guangning |
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Article |
author |
Xu, Zhilei Gao, Guoqiang Wei, Wenfu Yang, Zefeng Xie, Wenhan Dong, Keliang Ma, Yaguang Yang, Yan Wu, Guangning |
author_sort |
Xu, Zhilei |
title |
Characteristics of pantograph-catenary arc under low air pressure and strong airflow |
title_short |
Characteristics of pantograph-catenary arc under low air pressure and strong airflow |
title_full |
Characteristics of pantograph-catenary arc under low air pressure and strong airflow |
title_fullStr |
Characteristics of pantograph-catenary arc under low air pressure and strong airflow |
title_full_unstemmed |
Characteristics of pantograph-catenary arc under low air pressure and strong airflow |
title_sort |
characteristics of pantograph-catenary arc under low air pressure and strong airflow |
publishDate |
2023 |
url |
https://hdl.handle.net/10356/164341 |
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1756370597616549888 |