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Stability and Dynamic Analyses of Transmission Tower-Line Systems Subjected to Conductor Breaking

机译:导体断裂传输塔线系统的稳定性和动态分析

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Ice loads exerted on the transmission line can increase the probability of conductor breaking, which will lead to the stability failure of transmission towers. In this paper, a transmission tower-line system is established for two towers and three span lines. Then the nonlinear static stability analysis and nonlinear dynamic stability analysis induced by the conductor breaking are carried out to obtain the load versus displacement curves, while studying the failure modes of the transmission tower-line system. Moreover, the ice load and initial eccentricity are considered in the numerical simulation. In addition, a parametric analysis is performed to investigate the influence of span, insulator length and initial tension force on the stability failure of the system. The results show that the dynamic instability will occur earlier than the static instability due to the dynamic impact effect and conductor breaking with ice loads can lead to the progressive collapse of the transmission tower-line system. Finally, the span length has the greatest effect on the response of transmission tower caused by conductor breaking.
机译:施加在传输线上的冰负荷可以提高导体破碎的可能性,这将导致传动塔的稳定性故障。在本文中,为两个塔和三个跨度线建立了传输塔线系统。然后,执行由导体断裂引起的非线性静态稳定性分析和非线性动态稳定性分析,以获得负载与位移曲线,同时研究传输塔线系统的故障模式。此外,在数值模拟中考虑了冰负荷和初始偏心。另外,进行参数分析以研究跨度,绝缘体长度和初始张力对系统稳定性故障的影响。结果表明,由于动态冲击效果和冰负荷的导体破碎导致动态不稳定,动态不稳定性会导致传输塔线系统的逐步崩溃。最后,跨度长度对导体破碎引起的传输塔的响应具有最大的影响。

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