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Modeling Ice Shedding Propagation on Transmission Lines with or without Interphase Spacers

机译:在有或没有间期间隔物的传输线上模拟冰的传播

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摘要

Ice shedding propagation on a single conductor and on a circuit of three conductors in a vertical configuration where conductors are linked with interphase spacers was modeled numerically. Several concentrated loads acting along the loaded span modeled the ice, and the shedding propagation was then simulated through the removal in a defined sequence of these concentrated loads. The model determines conductor displacement and the variation of conductor tension during the vibration following ice shedding propagation; and, thus, it predicts conductor rebound height, tension peak, and to what extent the conductor clearance is reduced during vibration. Ice shedding propagation on the full-scale test line of Hydro-Quebec was considered, and the model was validated by comparing simulation results to former experimental observations. The results show that the application of spacers reduces the severity of vibration considerably, and consequently increases the conductor clearance and reduces the risk of flashover. The dynamic effects of different shedding processes were also compared. The rebound height is the greatest for a single conductor when ice detachment propagates along the conductor, but then ice falls suddenly as a big chunk. However, the consequences of sudden detachment and shedding are obtained as the most severe when conductors are linked with spacers.
机译:数值模拟了在垂直配置下单根导体和三根导体的电路上的结冰传播过程,其中导体与相间垫片相连。沿加载跨度作用的几个集中载荷对冰进行了建模,然后通过按照定义的顺序除去这些集中载荷来模拟脱落传播。该模型确定了脱落冰后振动过程中的导体位移和导体张力的变化。因此,它可以预测导体的回弹高度,张力峰值以及在振动过程中导体间隙的减小程度。考虑了魁北克水电公司满规模试验线上的融冰扩散,并通过将模拟结果与以前的实验观察结果进行比较来验证该模型。结果表明,垫片的使用大大降低了振动的严重性,因此增加了导体间隙并降低了飞弧的风险。还比较了不同脱落过程的动态影响。当冰分离沿导体传播时,单个导体的回弹高度最大,但随后冰突然大块地掉落。但是,当导体与垫片连接时,突然分离和脱落的后果最为严重。

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