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Effect of corona and non-linear tower grounding system modelling on backflashover simulation

机译:电晕和非线性塔架接地系统建模对反闪模拟的影响

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The paper deals with the integration of ATP-EMTP models representing grounding system nonlinearities and corona effect in a wider overhead line (OHL) model, for the main purpose of backflashover (BFO) transient simulations. All towers of the simulated 10 km stretch (25 spans) of a typical 150 kV – 50 Hz Italian OHL have been equipped with a pi-type simplified grounding system model, reproducing transient behaviour including soil ionization phenomena. A MODELS-controlled lumped-parameter model block has been introduced to simulate corona effect on shield wire and on phase conductors, at 50 m intervals along the OHL. The behavior of the proposed corona model is in good agreement with the tests available in the literature. For the BFO simulations presented in this paper, related to direct lightning strokes to tower peaks and to the shield wire, the complete OHL model has provided consistent results with the expected behavior of the transmission lines under lightning surge conditions: results show that the corona effect may influence the BFO for tower strokes while it has a negligible influence for mid-shield wire strokes.
机译:本文讨论了在较宽的架空线(OHL)模型中表示接地系统非线性和电晕效应的ATP-EMTP模型的集成,其主要目的是进行反闪(BFO)瞬态仿真。典型的150 kV – 50 Hz意大利OHL的模拟10 km延伸(25跨度)的所有塔架均配备了pi型简化接地系统模型,可再现包括土壤电离现象在内的瞬态行为。引入了模型控制的集总参数模型块,以模拟沿OHL间隔50 m的电晕对屏蔽线和相导体的影响。所提出的电晕模型的行为与文献中的测试非常吻合。对于本文中提出的BFO模拟,其与直接向塔顶峰和屏蔽线的雷击有关,完整的OHL模型提供了与在雷电浪涌条件下传输线的预期行为一致的结果:结果表明,电晕效应可能会影响塔架行程的BFO,而对中屏蔽线行程的影响却可以忽略不计。

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