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Artificially triggered lightning and its characteristic discharge parameters in two severe thunderstorms

机译:两次雷暴中的人工触发雷电及其特征性放电参数

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The lightning-induced-damages in the mid-latitude regions are usually caused during severe thunderstorms. But the discharge parameters of natural lightning are difficult to be measured. Five lightning flashes have been artificially triggered with the rocket-wire technique during the passage of two severe thunderstorms. The discharge current and close electric field of return stroke in artificially triggered lightning have been obtained in microsecond time resolution by using current measuring systems and electric field change sensors. The results show that the five triggered lightning flashes include 1 to 10 return strokes, and the average return stroke current is 11.9 kA with a maximum of 21.0 kA and a minimum of 6.6 kA, similar to the subsequent return strokes in natural lightning. The half peak width of the current waveform is 39 us, which is much larger than the usual result. The peak current of stroke I_p(kA) and the neutralized charge Q(C) has a relationship of I_p = 18.5Q~(0.65). The radiation field of return stroke is 5.9 kV • m~(-1) and 0.39 kV • m~(-1) at 60 m and 550 m, respectively. The radiation field decreases as r~(-1.119) with increase of horizontal distance r from the discharge channel. Based on the well-accepted transmission line model, the speed of return stroke is estimated to be about 1.4 × 10~8m·s~(-1), with a variation range of (1.1-1.6)×10~8m·s~(-1). Because of the similarities of the triggered lightning and natural lightning, the results in this article can be used in the protection design of natural lightning.
机译:中纬度地区的雷电伤害通常是在强雷暴期间造成的。但是自然雷电的放电参数很难测量。在两次严重的雷暴过后,用火箭线技术人工触发了五次闪电。通过使用电流测量系统和电场变化传感器,以微秒的时间分辨率获得了人工触发的闪电中的放电电流和返回冲程的闭合电场。结果表明,五次触发的雷击包括1到10个回击,平均回击电流为11.9 kA,最大为21.0 kA,最小为6.6 kA,与自然雷击中的后续回击相似。电流波形的半峰宽为39 us,比通常的结果大得多。行程I_p(kA)和中和电荷Q(C)的峰值电流具有I_p = 18.5Q〜(0.65)的关系。在60 m和550 m处,回程的辐射场分别为5.9 kV•m〜(-1)和0.39 kV•m〜(-1)。辐射场随着距放电通道的水平距离r的增大而减小,为r〜(-1.119)。根据公认的传输线模型,回程速度估计约为1.4×10〜8m·s〜(-1),变化范围为(1.1-1.6)×10〜8m·s〜 (-1)。由于触发雷电与自然雷电的相似性,本文的结果可用于自然雷电的防护设计。

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