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首页> 外文期刊>IEEE Transactions on Plasma Science >Abrupt Changes in Streamer Propagation Velocity Driven by Electron Velocity Saturation and Microscopic Inhomogeneities
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Abrupt Changes in Streamer Propagation Velocity Driven by Electron Velocity Saturation and Microscopic Inhomogeneities

机译:电子速度饱和和微观不均匀性驱动的拖缆传播速度的突变

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Causes of streamer acceleration caused by electron velocity saturation at intense electric fields are investigated in liquid dielectrics. Findings of this paper explain regimes of higher positive streamer velocity using a nonlinear electric-field-dependent electron velocity model that describes the streamer velocity more accurately when compared with the experimental results in the literature. Streamer branching in inhomogeneous transformer oil is also studied as an alternative cause of sudden changes in streamer velocity magnitude and direction, because after branching, the velocities of the born branches are significantly higher than the main streamer column velocity. In this paper, a 3-D model is established to incorporate nonsymmetrical variations in the streamer shape. The modeling results show that the streamer branching has both stochastic and deterministic origins. The stochastic parameters are determined by the content of inhomogeneity in the liquid and the deterministic origins of branching are defined by the structure of the volume charge layer at the streamer head. The results indicate that the sudden changes in streamer velocities are due to the electric-field-dependent electron mobility, electric-field-dependent ionization potential of dielectric molecules, and the branching capability of streamers even in extremely homogeneous liquid bulk.
机译:在液体电介质中研究了强电场下电子速度饱和引起的拖缆加速的原因。本文的发现使用非线性电场相关的电子速度模型解释了较高的正拖缆速度的机制,该模型与文献中的实验结果相比,可以更准确地描述拖缆速度。还研究了不均匀变压器油中的拖缆分支,这是拖缆速度幅度和方向突然变化的替代原因,因为分支之后,分支支流的速度显着高于主拖缆柱速度。在本文中,建立了一个3-D模型以在拖缆形状中包含非对称变化。建模结果表明,拖缆分支具有随机和确定性起源。随机参数由液体中的不均匀性含量决定,分支的确定性起源由拖缆头处的体积电荷层的结构定义。结果表明,拖缆速度的突然变化是由于电场依赖性电子迁移率,电介质分子的电场依赖性电离电势以及拖缆的分支能力所致,即使在极其均匀的液体体积中也是如此。

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