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Investigation of lightning ignition characteristics based on an impulse current generator

机译:基于脉冲电流发生器的雷电点火特性研究

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摘要

Lightning strike is an important ignition source of forest fires. Artificial lightning discharge is a method for studying lightning fires. However, there is not enough data on the ignition of combustible materials caused by artificial lightning discharge. Previous studies on lightning ignition have focused on the heating and ignition effects of long continuing current (LCC), but the function of the impulse current that occurs before the LCC has not been taken into account. In this paper, an impulse current generator of 8/20 μs was used to simulate the ignition effect of impulse current on conifer needle beds. Different current waveforms have different ignition characteristics. We compared five kinds of conifer needle beds. The average of the current needed to ignite the needle bed of (Ruprecht) Kuzeneva was the smallest, and the average of the breakdown voltage was the smallest for the needle bed of Lamb. The total energy input to the conifer needle beds was fitted as a multiple log‐linear regression model. The heating energy proportion value varies with different bulk densities, current amplitudes, and moisture contents. Based on this data, the heating energy of the impulse current transferred to the needles can be predicted. This information in conjunction with previous research on LCC was used to derive a lightning ignition prediction model of the full waveform for conifer needle beds.
机译:雷击是森林火灾的重要点火源。人工雷电放电是研究雷电火灾的一种方法。但是,关于由人工雷电放电引起的可燃材料着火的数据不足。以前关于雷击点火的研究集中在长持续电流(LCC)的加热和点火效应上,但是尚未考虑在LCC之前发生的脉冲电流的功能。在本文中,使用8 /20μs的脉冲电流发生器来模拟脉冲电流在针叶树针床上的点火效果。不同的电流波形具有不同的点火特性。我们比较了五种针叶树针床。点燃(Ruprecht)Kuzeneva针床所需电流的平均值最小,而击穿电压的平均值对于Lamb针床而言最小。针叶树针床的总能量输入被拟合为多重对数线性回归模型。加热能量比例值随不同的堆积密度,电流幅度和水分含量而变化。基于该数据,可以预测传递到针的脉冲电流的热能。该信息与以前在LCC上的研究相结合,用于得出针叶树针床全波形的闪电点火预测模型。

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