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A one-dimensional thermo-hydrodynamic model for upward leader inception considering gas dynamics and heat conduction

机译:考虑气体动力学和热传导的一维热导动力学模型

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Modeling of upward leader inception is important for lightning risk assessment of high voltage transmission systems. The classical thermodynamic model for long gap leader discharge proposed by Gallimberti has been widely adopted for about 30 years and applied to the analysis of unstable upward leader inception, taking gas temperature rising to 1500 K as the criterion. However, the gas dynamic process and heat conduction which have influences on the gas temperature and leader diameter are not fully considered in this model. Theoretical analysis and simplified simulation illustrated that there are a few limitations without taking the two factors into account. In this paper, the gas dynamics and heat conduction have been considered, and a modified one-dimensional thermo-hydrodynamic (1D-THD) model has been proposed to calculate the inception of upward leader. This model also applies to leader channel expansion. Besides, a Mach-Zehnder interferometer was set up to observe the gas density variation and radial expansion of heated leader channels. The calculation results of the channel expansion have good agreements with experimental data. (C) 2015 Elsevier B.V. All rights reserved.
机译:向上引线开始的建模对于高压输电系统的雷电风险评估很重要。 Gallimberti提出的经典的长间隙先导放电热力学模型已被广泛采用约30年,并以气体温度升至1500 K为标准,用于不稳定的先导先启分析。但是,在此模型中并未充分考虑影响气体温度和引伸直径的气体动力学过程和热传导。理论分析和简化仿真表明,在不考虑这两个因素的情况下存在一些限制。在本文中,考虑了气体动力学和热传导,并提出了一种改进的一维热流体动力学(1D-THD)模型来计算上升先导的起始时间。此模型也适用于领导者渠道扩展。此外,还设置了马赫曾德尔干涉仪,以观察气体密度变化和加热的引导通道的径向膨胀。通道扩展的计算结果与实验数据吻合良好。 (C)2015 Elsevier B.V.保留所有权利。

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