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作 者:Pei Xu Yanxiang Ma Jie Zhu Luxing Zhao Boyang Shen Xingming Bian
机构地区:[1]State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources,North China Electric Power University,Beijing,China [2]Shijingshan Power Supply Company,State Grid Beijing Electric Power Supply Company,Beijing,China [3]Yangzhou Power Supply Company,State Grid Jiangsu Electric Power Supply Company,Yangzhou,China [4]High Voltage Research Department,China Electric Power Research Institute,Beijing,China [5]Electrical Engineering Division,University of Cambridge,Cambridge,UK
出 处:《High Voltage》2022年第1期147-157,共11页高电压(英文)
基 金:supported by the National Natural Science Foundation of China(51877082,51377096);the Fok Ying‐Tong Education Foundation,China Grant No.151,058;the Fundamental Research Funds for the Central Uni-versities 2019MS011.
摘 要:Persistent severe smog and dust weather exists in many regions of China.Particles accu-mulate on the surface of high‐voltage transmission lines,which affects the surface morphology of the transmission line and induces corona discharge.This work mainly studies the influence of electric field and photocatalysis on the corona characteristics of transmission lines.In this work,plasma spraying is used to prepare a dense,smooth and excellent photocatalytic TiO_(2)coating on the surface of transmission wires.An electron microscope and a white light interference profilometer is used to study the surface condition of the samples.The variation in the surface condition of the samples is observed under different fouling,light time and electric field intensity.The corona characteristics of power transmission lines under different surface conditions are studied.The results show that light and applied electric field promote the photocatalytic effect of TiO_(2),which helps to decompose the contamination on the surface of power transmission wires and thus reduce the corona discharge of transmission lines.The increase in corona inception voltage reduces the corona current pulse repetition rate and the ion current density during corona discharge.
关 键 词:discharge. COATING surface
分 类 号:TM721.1[电气工程—电力系统及自动化]
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