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Gasdynamic Instabilities during Decay of the Submicrosecond Spark Discharge Channel

机译:亚微秒火花放电通道衰减期间的气体动力学不稳定性

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This work is devoted to studying the dynamics of breakdowns of submicrosecond high-voltage electric discharge and discharge-accompanying hydrodynamic phenomena and to analyzing the possibility of its application for acceleration of the component mixing in solving high-speed combustion problem. This work presents the results of experimental and numerical studies of the development of gasdynamic disturbances during the afterspark channel decay. The main parameters of the discharge are as follows: the typical length is 50-60 mm, the breakdown voltage is up to 120 kV, the duration time is 80-100 ns, the energy is up to 2 J, and the order of magnitude of the instantaneous power is 100 MW. For the first time, jet-type instabilities have been studied in detail and described. It is shown that the development of large-scale instabilities is tightly related to the discharge channel geometry. The mechanism of the breakdown development and the related possibility of controlling the discharge channel shape are discussed.
机译:这项工作致力于研究亚微秒级高压放电击穿的动力学以及伴随放电的流体动力学现象,并分析其在解决高速燃烧问题中加速组分混合应用的可能性。这项工作提出了后火花通道衰减期间气体动力扰动发展的实验和数值研究结果。放电的主要参数如下:典型长度为50-60 mm,击穿电压最高为120 kV,持续时间为80-100 ns,能量最高为2 J,量级瞬时功率为100 MW。首次对射流类型的不稳定性进行了详细的研究和描述。结果表明,大规模不稳定性的发展与放电通道的几何形状密切相关。讨论了击穿发展的机理以及控制放电通道形状的相关可能性。

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