首页> 外文期刊>IEEE Transactions on Plasma Science >Is Indirect Electrode a Good Choice for Simulated Lightning Damage Tests?—The Effect of Metal Vapor
【24h】

Is Indirect Electrode a Good Choice for Simulated Lightning Damage Tests?—The Effect of Metal Vapor

机译:是间接电极是模拟雷电损伤测试的良好选择吗? - 金属蒸汽的效果

获取原文
获取原文并翻译 | 示例

摘要

The laboratory lightning testing commonly uses an indirect electrode as the current injection configuration to restraint the electrode jet for evaluation of lightning strike damage tolerance of aircraft materials. Such an indirect electrode configuration requires using a conductive ignition wire to initiate the arc. This work discusses the influence of added metal vapor, produced due to evaporation of the ignition wire, on the electric-arc-induced heat flux and current density as well as the material damage through numerical modeling and simulated experiments. Metal vapor originated from the requisite ignition wire considerably alters the net emission coefficient and transport properties of the arc, leading to questionable testing results and unreliable guidance for lightning protection design. The damage depth of an aluminum alloy is affected by 312.5% due to the changes in the net emission coefficient and thermal conductivity. The damage area shows moderate changes due to a Gaussian-shape decrease profile of heat flux and its insensitivity to the changes in the net emission coefficient. The direct electrode configuration is promising to avoid the use of ignition wire and produce material damage representative of actual damage caused by natural lightning. The results and discussions provide insights into the design of improved lightning certification tests.
机译:实验室闪电测试通常使用间接电极作为当前喷射配置,以抑制电极射流,以评估飞机材料的雷击抗击损坏容差。这种间接电极配置需要使用导电点火线来启动电弧。这项工作讨论了由于点火线蒸发,在电弧诱导的热通量和电流密度以及通过数值建模和模拟实验造成的材料损坏,因此讨论了添加的金属蒸汽的影响。源于必需的点火线的金属蒸气显着改变了弧的净排放系数和运输特性,导致可疑的测试结果和防雷设计的不可靠的指导。由于净排放系数和导热率的变化,铝合金的损伤深度受312.5%的影响。由于高斯形状降低热通量的曲线及其对净排放系数的变化的不敏感性,损伤区域显示了适度的变化。直接电极配置很有希望避免使用点火线并产生代表由自然闪电造成的实际损坏的材料损坏。结果和讨论为改进的雷电认证测试设计提供了见解。

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