...
首页> 外文期刊>BJU international >Modeling of Streamer Ignition and Propagation in the System of Two Approaching Hydrometeors
【24h】

Modeling of Streamer Ignition and Propagation in the System of Two Approaching Hydrometeors

机译:两种接近水流系统系统中飘带点火和传播的建模

获取原文
获取原文并翻译 | 示例
           

摘要

First-principles plasma fluid modeling is used for investigation of electrical gas discharges ignited by a configuration of two approaching conducting hydrometeors with typical radii on the order of several millimeters under thunderstorm conditions (i.e., at an elevated location in the Earth's atmosphere corresponding to half of air density at ground level and at applied electric field approximately half of that required for avalanche multiplication of electrons in air). It is demonstrated that ultraviolet photons produced by the electrical discharges developing due to the electric field enhancement in the gap between two hydrometeors and resultant photoionization in the discharge volume lead to much less stringent conditions for conversion of these discharges to a filamentary streamer form than in the case not accounting for the effects of photoionization. It is also demonstrated that this photoionization feedback is critical for understanding and correct description of the subsequent streamer discharges developing on the outer periphery of two hydrometeors whose potential is equalized due to the electrical connection established by the initial streamer discharge between them. The initial streamer ignition between the hydrometeors can be preceded by the corona development, which can have detrimental effect on the ignition. However, it is demonstrated that for hydrometeors approaching with a speed of similar to 10 m/s the effect of this onset corona is small.
机译:第一原理等离子体液体建模用于通过两种接近的电氢气计量器的配置进行调查,其在雷暴条件下的数毫米的典型半径(即,在地球大气层的升高位置)的典型半径地面水平的空气密度和应用电场在空气中的雪崩乘法所需的大约一半)。结果证明,由于两个水流仪之间的间隙中的电场增强而产生的电放电产生的紫外光子和放电体积中的光相导致的可加工,以便将这些放电转换为丝状飘带形式的严格条件。案例未占光相的影响。还证明,该光离子反馈对于理解和校正后续拖射器的描述至关重要,其在两个水流器的外周上显影的后续拖动机,其电位均衡由于由它们之间的初始流动器放电建立的电连接来均衡。水中仪之间的初始炉火可以在电晕开发之前,这可能对点火产生不利影响。然而,证明了对于速度与相似的速度与10米/秒相似的速度,这种发起电晕的效果很小。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号