首页> 外文会议>2015 IEEE 11th International Conference on the Properties and applications of Dielectric Materials >Electric field distribution computation and corona suspension for rigid jumper in UHV double circuit tension tower
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Electric field distribution computation and corona suspension for rigid jumper in UHV double circuit tension tower

机译:特高压双回线塔刚性跳线的电场分布计算和电晕悬挂

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Owing to its complex structure, high electric field strength, the rigid jumper on 1000kV double circuit tension tower is prone to corona that needs suppression and much more consideration. Using three dimensional finite element method software ANSYS, the electric field distribution on the surface of rigid jumper with aluminum tube structure was calculated when considering the effect of tower, fittings, insulator strings and phase influence. In order to study the several influencing factors, based on the original calculation model, 5 scenarios were calculated, and the influencing factors of electric field distribution on jumper were researched and compared. Effects of sag height, angle of tension tower and diameter of jumper were studied in detail. Based on the results, the influence from phase is much more significantly than tower, ground and among circuit; the regularity of the electric field distribution on the surface of rigid jumper with different sag heights, angles of tension tower and diameters of jumper was obtained; rigid jumper should choose JL/G3A-900/40 extended diameter conductor and minimize the sag height in actual installation. The research achievements will be used in actual project, it is applicable not only for corona suppression, but also for the selection of conductor and the arrangement of jumper.
机译:由于结构复杂,电场强度高,1000kV双回路拉力塔上的刚性跳线容易产生电晕,需要抑制和更多的考虑。利用三维有限元方法软件ANSYS,在考虑塔架,配件,绝缘子串和相位影响的情况下,计算了铝管结构刚性跳线表面的电场分布。为了研究几种影响因素,在原始计算模型的基础上,计算了5种情况,并对跳线电场分布的影响因素进行了比较研究。详细研究了下垂高度,张力塔角度和跳线直径的影响。根据结果​​,相的影响比塔,地和电路之间的影响大得多。得到了下垂高度,张力塔角度和跳线直径不同的刚性跳线表面电场分布规律。刚性跳线应选择JL / G3A-900 / 40扩径导体,并在实际安装中最大程度降低下垂高度。研究成果将用于实际工程中,不仅适用于电晕抑制,还适用于导体的选择和跳线的布置。

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