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作 者:杨滔[1] 赵克江[2] 刘渝根[3] 田金虎[2]
机构地区:[1]国网重庆市电力公司,重庆400014 [2]国网重庆市电力公司检修分公司,重庆400039 [3]重庆大学输配电装备及系统安全与新技术国家重点实验室,重庆400030
出 处:《高压电器》2015年第12期6-13,共8页High Voltage Apparatus
基 金:国家创新研究群体基金(51021005)~~
摘 要:为研究特高压交流输电线路分裂导线表面电场强度,笔者基于偶极子法,计算了4种典型塔型特高压交流输电线路分裂导线表面电场强度,进而分析讨论了导线对地平均高度、导线布置方式、分裂间距、相间距、分裂数、子导线截面、相序、架设屏蔽线等因素对分裂导线表面电场强度影响的规律和特点。结果表明:分裂导线各子导线由于空间位置不同使得其表面最大电场也不同;分裂导线分裂数、截面对导线表面最大电场的影响最大,导线对地平均高度、分裂间距、相间距离及布置方式对其表面最大电场强度的影响相对较小;双回线路相序排列方式对上、下相分裂导线表面电场强度影响较大,对中相导线表面电场影响相对较小;架设屏蔽线会增大分裂导线表面电场强度。According to the actual situation of the UHVAC transmission lines, the surface electric field intensity on the bundled conductors is calculated based on the dipole method. Then, the effects of the factors, such as the average height of lines to ground, layout, bundled distance, distance among phases,number of bundles, cross-section area of a conductor, phase sequence, and shielding lines, on the surface electric field intensity of bundled conductors are analyzed and discussed. The results show that: 1 The surface electric field intensity of the bundled conductors is different; 2 The number of bundles and cross-section area of a conductor impose significant effects on the surface electric field intensity, while other factors, such as the average height of lines to ground, layout, bundled distance, and distance among phases, impose relatively smaller effects on the surface electric field intensity; 3 The phase sequence has significant effect on the surface electric field intensity of the top and bottom phases of transmission lines,and has smaller effect on the middle phase; and 4 The shielding lines can enhance the surface electric field intensity of bundled conductors.
关 键 词:特高压交流输电线路 分裂导线 电场强度 偶极子法 影响因素
分 类 号:TM751[电气工程—电力系统及自动化]
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