Zhang Hua-ming, Yuan Ping, Su Mao-gen, Lü Shi-hua
College of Physics and Electronic Engineering, Northwest Normal University, Lanzhou 730070, China.
Guang Pu Xue Yu Guang Pu Fen Xi. 2007 Oct;27(10):1929-32.
Spectra of return strokes for artificial triggered lightning were obtained by optical multi-channel analyzer (OMA) in Shandong region. Compared with previous spectra of natural lightning, additional lines of ArI 602.5 nm and ArII 666.5 nm were observed. Under the model of local thermodynamic equilibrium, electronic temperatures of the lightning channel plasma were obtained according to the relative line intensities. Meanwhile, with semi-empirical method the electron density was obtained by Halpha line Stark broadening. In combination with plasma theory, electrical conductivity of the lightning channel has been calculated for the first time, and the characteristic of conductivity for lightning channel was also discussed. The relation between the electrical conductivity of channel and the return stroke current was analyzed, providing reference data for further work on computing return stroke current. Results show that the lightning channel is a good conductor, and electrons are the main carrier of channel current. The brightness of artificial triggered lightning channel is usually higher than that of natural lightning, and its current is smaller than that of the natural lightning.
利用光学多通道分析仪(OMA)在山东地区获取了人工触发闪电回击光谱。与以往自然闪电光谱相比,观测到了氩Ⅰ602.5纳米和氩Ⅱ666.5纳米的附加谱线。在局部热力学平衡模型下,根据相对谱线强度得到了闪电通道等离子体的电子温度。同时,采用半经验方法通过Hα谱线的斯塔克展宽得到了电子密度。结合等离子体理论,首次计算了闪电通道的电导率,并讨论了闪电通道电导率的特性。分析了通道电导率与回击电流之间的关系,为进一步计算回击电流的工作提供了参考数据。结果表明,闪电通道是良导体,电子是通道电流的主要载流子。人工触发闪电通道的亮度通常高于自然闪电,其电流小于自然闪电。