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Mechanism and characteristic of rain-induced vibration on high-voltage transmission line

机译:高压输电线路的雨致振动机理及特性

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Under the rainy weather, rain-induced vibration on high-voltage (HV) transmission line often occurs, which intensifies fatigue conductors and tower callapses. Mechanism and control measures of the rain-induced vibration have aroused wide attention in power engineering. The mechanism can be explained that the droplets suspended to the conductors amplify corona discharges with ionic wind, forms non-circular cross-sections, and the rain-induced vibration is due to the coupling action of vortex-induced vibration by ionic wind and galloping vibration by external wind force. Based on the mechanism, a valid model on the rain-induced vibration on high-voltage transmission line is proposed based on the finite element theory and the Newmark algorithm. Taking the conductor LGJ-240 as an instance, we investigate the effects of ionic wind and non-circular cross-sections with different parameters on amplitude of the conductors. The result shows non-circular cross-sections have obviously effects, and the ionic wind have a certain influence and easily to coupling with wind force. Mechanism and conclusions in this paper can be used as references to construct High-voltage transmission lines, upgrade the existing lines and control vibration.
机译:在阴雨天气下,高电压(HV)输电线路上经常会发生由雨引起的振动,这会加剧疲劳导体和铁塔的塌陷。雨引起的振动的机理和控制措施引起了电力工程的广泛关注。可以解释为这种机理可以解释为,悬浮在导体上的液滴会通过离子风放大电晕放电,形成非圆形横截面,而降雨引起的振动是由于离子风和驰豫振动引起的涡流振动的耦合作用所致。通过外部风力。基于该机理,基于有限元理论和Newmark算法,提出了高压输电线路雨水振动的有效模型。以导体LGJ-240为例,研究了离子风和具有不同参数的非圆形截面对导体振幅的影响。结果表明,非圆形截面具有明显的作用,并且离子风具有一定的影响,并且容易与风力耦合。本文的机理和结论可为建设高压输电线路,升级现有线路和控制振动提供参考。

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