Preliminary Results of Corona Discharge Current Measurements in the Early Formation of Lightning on Tower

Shaoyang Wang, Ming-li Chen, Yan Gao, Ya-ping Du
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Abstract

Lightning current as one of the most important parameters in the study of lightning physics and lightning protection have long been attended. Previously, due to the lack of suitable current measurement devices, the formation process of several milliampere corona discharges under thunderstorms and the development process of lightning channel up to hundreds of kiloamperes could only be measured separately, and the study of transition from corona discharge to leader process in lightning initiation stage has not been well-addressed. In this study, a 100 V shock tolerated preamplifier with a noise floor as low as 0.55 μV was designed and installed on Shenzhen Meteorological Gradient Tower (SZMGT) with a single 0.25 mΩ coaxial shunt for lightning current measurement. By using this device, we have successfully observed the corona discharges of several hundred milliamperes just before the formation of lightning leaders. The results showed that the preamplifier had achieved a noise level below 10 mA with a shock tolerance up to 220 kA.
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塔上闪电形成初期电晕放电电流测量的初步结果
雷电电流作为雷电物理和防雷研究的重要参数之一,一直受到人们的关注。以往由于缺乏合适的电流测量装置,雷暴条件下几毫安电晕放电的形成过程和高达数百千安雷电通道的发展过程只能单独测量,对雷电起爆阶段电晕放电向先导过程过渡的研究还没有得到很好的解决。本文设计了一个本底噪声低至0.55 μV的100 V耐冲击前置放大器,并将其安装在深圳气象梯度塔(SZMGT)上,该前置放大器采用单路0.25 mΩ同轴分流,用于雷电电流测量。利用该装置,我们成功地观测到了闪电前导形成前几百毫安的电晕放电。结果表明,前置放大器的噪声水平低于10 mA,冲击容忍度高达220 kA。
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