空气中非均匀电场作用下拖缆发展机理

K. Hotta, H. Kojima, N. Hayakawa, N. Yanagita, T. Kato, T. Rokunohe, H. Okubo
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引用次数: 2

摘要

利用超高速测量系统,讨论了在短气隙中导致击穿的拖缆通道的形成机理。我们澄清了导致击穿的二次流线的起始是由于从接地面电极向主流线形成的残余通道注入电子。此外,通过对导致击穿的单流道放电电流波形的选择性测量,验证了击穿是由二次流道的发展和随后聚焦于单流道的焦耳加热过程主导的。
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Streamer development mechanism under non-uniform electric field in air
We discussed the development mechanism of the streamer channel leading to breakdown in a short air gap, by using an ultra-high speed measuring system. We clarified that the initiation of the secondary streamer leading to breakdown is attributed to an electron injection from the grounded plane electrode to the residual channel made by the primary streamer. In addition, by selective measurement of the discharge current waveform of single streamer channel leading to breakdown, the breakdown was verified to be dominated by the development of the secondary streamer and the subsequent Joule heating process focusing on the single streamer channel.
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