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Effects of Suspension Pattern on Operation Reliability of Anti-Icing Polymer Insulators in HVAC Transmission Lines

机译:悬架模式对HVAC输电线路防冰聚合物绝缘子运行可靠性的影响

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Design and application of anti-icing polymer insulators have been considered as one of effective methods to prevent the icing accretion and icing flashover on outdoor insulators, which is greatly significant to the safety and reliability of power transmission systems. In this paper, according to the actual operation of transmission lines, the wind load and gravity load were calculated under different wind scales. The wind loads and the inclined angles were considered to analyze the axial force of insulator on windward side, the axial force of insulator on legging side and deformation displacement of anti-icing polymer insulators under different meteorological conditions. The obtained results showed that the static axial force distribution, maximum mechanical load and deformation displacement increase with the increase in the wind scales. With increasing the inclined angle of the insulator, the axial tension shows the decreasing tendency from 30° to 60° but then the increasing tendency from 60° to 110°. And the minimum value of axial tension increases gradually with the increase in wind scales. The operation reliability of anti-icing polymer insulators shows the decreasing tendency with the increase in the wind speeds. The optimal suspension pattern with the inclined angle about 60° is also proposed, which can make quantitative optimization analysis on relationship between the typical meteorological condition and operation reliability to improve the reliability and stability of anti-icing polymer insulators in transmission lines.
机译:防冰聚合物绝缘子的设计和应用已被认为是防止室外绝缘子上积冰和结冰闪络的有效方法之一,这对输电系统的安全性和可靠性具有重要意义。本文根据输电线路的实际运行情况,计算了不同风标度下的风荷载和重力荷载。考虑风荷载和倾斜角,分析了不同气象条件下绝缘子在迎风侧的轴向力,绝缘子在绑腿侧的轴向力以及防冰聚合物绝缘子的变形位移。获得的结果表明,静轴力分布,最大机械载荷和变形位移随风标的增加而增加。随着绝缘子的倾斜角的增加,轴向张力呈现出从30°减小到60°的趋势,然后呈现出从60°增大到110°的趋势。并且轴向张力的最小值随着风标的增加而逐渐增加。防冰聚合物绝缘子的工作可靠性随着风速的增加而呈现下降的趋势。提出了倾斜角约为60°的最佳悬挂方式,可以对典型气象条件与运行可靠性之间的关系进行定量优化分析,以提高输电线路防冰聚合物绝缘子的可靠性和稳定性。

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