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Dynamic Behavior of Transmission Tower-Line Systems Subjected to Insulator Breakage

机译:透射塔线系统经受绝缘子破损的动态行为

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摘要

Ice loads attached to a transmission tower-line system can not only increase the vertical loads on the insulators, but also cause flashover to occur more easily. Both effects can lead to an increased probability of insulator breakage. In this paper, a finite-element model of a transmission tower-line system with three towers and four span lines under the ice loads is established. Dynamic analyses of the tower-line system after insulator breakage are performed to study the dynamic responses of the system and its failure process. In addition, a parametric analysis is conducted to investigate the influence of span length and insulator length on the vibration of the system and the failure mode. The results show that a larger ice load can lead to more severe vibration of the tower-line system due to the insulator breakage. Moreover, as the span length increases, the insulator breakage can result in more serious consequences and even the cascading collapse of the transmission tower-line system. This study provides crucial reference for preventing the failure of transmission tower-line systems in heavy ice regions.
机译:附加到传输塔线系统的冰负载不仅可以增加绝缘体上的垂直载荷,而且还可以更容易地引起闪光灯。这两种效果都可以导致绝缘体破裂的概率增加。在本文中,建立了具有三个塔和四个跨度线下的传输塔线系统的有限元模型。塔式系统的动态分析进行了绝缘子破损,研究了系统的动态响应及其故障过程。另外,进行参数分析以研究跨度长度和绝缘体长度对系统的振动和故障模式的影响。结果表明,由于绝缘体破损,较大的冰负荷可能导致塔式系统的更严重的振动。此外,随着跨度长度的增加,绝缘体破裂可以导致更严重的后果,甚至是传输塔线系统的级联崩溃。本研究为防止重型冰区输电塔线系统失败提供了关键参考。

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