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首页> 外文期刊>Journal of Cold Regions Engineering >Analyzing Loads from Ice Shedding Conductors for UHV Transmission Towers in Heavy Icing Areas
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Analyzing Loads from Ice Shedding Conductors for UHV Transmission Towers in Heavy Icing Areas

机译:分析重冰区特高压输电塔的刨冰导体负荷

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摘要

In this paper, a finite element analysis (FEA) model of seven span continuous conductors and insulators for an ultra high voltage (UHV) transmission line in a heavy icing area was established for ice shedding analysis. The parameters considered in the ice shedding simulation analysis include damping ratio, ice shedding ratio, ice shedding modes, and ice thickness. The dynamic responses including jumping heights, unbalanced tensions, and vertical loads at the end of the insulator were obtained. The effects of each of the parameters on the dynamic responses were discussed. The design values for unbalanced tensions and vertical loads were proposed for the UHV suspension tower in a heavy icing area based on the analyses results. The dynamic magnification factors of the vertical load should be between 1.06 and 1.11. For the suspension tower in 20 and 30 mm icing areas, the uplift load percentage is proposed to be 10%. For the suspension towers in 40 and 50 mm icing areas, the uplift load percentage is proposed to be 5%.
机译:本文建立了在结冰较重地区超高压(UHV)输电线路的七个跨距连续导体和绝缘子的有限元分析模型,以进行结冰分析。刨冰模拟分析中考虑的参数包括阻尼比,刨冰比,刨冰模式和冰厚。获得了动态响应,包括跳跃高度,不平衡张力以及绝缘子末端的垂直载荷。讨论了每个参数对动态响应的影响。根据分析结果,提出了重雪地区特高压悬索塔不平衡张力和竖向荷载的设计值。垂直载荷的动态放大系数应在1.06和1.11之间。对于在20和30 mm覆冰区域的悬挂塔,提升载荷百分比建议为10%。对于40和50 mm覆冰区域的悬挂塔,提升载荷百分比建议为5%。

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