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Overhead Transmission Lines Deicing under Different Incentive Displacement

机译:不同激励位移下的架空输电线路除冰

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Overhead transmission line icing is one of the main factors affecting safety and reliability of power grid. This paper proposed an excitation deicing method of iced wire and theoretically revealed the ice removal mechanism under displacement excitation conditions, by taking the LGJ-70/10 glaze icing wire as the 3D model and analyzing and studying its dynamic response under the effect of displacement excitation. The simulation results show that the stress of wire icing area is enlarged with the increase of excitation displacement and frequency. Through the comparison of the compression strength experimental results on a series of different iced wires in low temperature environment, the authors found out that the stress generated from the wire icing area is greater than the crushing strength of the ice within the scope of the calculation parameters, which proved the validity and the feasibility of the method, and finally the suitable excitation displacement is determined. Following studies show that, as far as possible, it is necessary to reduce the incentive displacement and also to select the appropriate constraint length in order to avoid the line jumping that may be caused by large span ice shedding.
机译:架空输电线路的覆冰是影响电网安全可靠性的主要因素之一。本文以LGJ-70 / 10釉线为3D模型,对位移激励作用下的动力响应进行了分析研究,提出了冰丝激励除冰的方法,从理论上揭示了位移激励条件下的除冰机理。 。仿真结果表明,随着激励位移和频率的增加,导线覆冰区域的应力增大。通过对低温环境下一系列不同的冰丝的抗压强度实验结果的比较,作者发现,在计算参数范围内,冰丝结冰区域产生的应力大于冰的抗压强度。证明了该方法的有效性和可行性,最后确定了合适的激励位移。后续研究表明,有必要尽可能减少激励位移并选择合适的约束长度,以避免大跨度冰块脱落引起的跳线。

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