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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >The Spatial Evolution of Upward Positive Stepped Leaders Initiated From a 356-m-Tall Tower in Southern China
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The Spatial Evolution of Upward Positive Stepped Leaders Initiated From a 356-m-Tall Tower in Southern China

机译:从南方356米高塔发起的向上积极阶梯式领导人的空间演变

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摘要

Two initial upward positive leaders (UPLs) in upward negative flashes initiated from a 356-m-tall tower were observed with a high-speed camera, an electric field sensor, and a magnetic field sensor. Although the waveforms of electric fields measured were saturated, both camera images and magnetic fields showed that the two UPLs had obvious stepwise characteristics in their upward moving stage. The magnetic fields associated with the UPLs were characterized by a series of fast-changing bipolar impulses superimposed on a slowly increasing continuous component as the leaders moved upward, which were well corresponding to the light intensity changes of their high-speed camera images. The 2-D step length and step extension speed of the two leaders were estimated in the range of 0.5-3 m and 1.1-9.4 × 105 m/s, respectively. The radius of the leader luminous channel as a function of time and height was also estimated. The channel radius showed first a stable increasing trend in the leader upward moving stage and then 4-5 times of shrinking and expanding processes after the leader connected the cloud. The channel expanding and shrinking speeds were in the range of 2-9 × 104 m/s. Particularly, the channel radius showed an obvious increasing trend with the increase of the height all the time, which was in the range of 2.8-3.5 m when around the tower tip and of 5.6-8.4 m when at 24 m high above the tower tip. Such a feature of the channel radius is in good agreement with the concept of leader corona sheath in literature.
机译:用高速摄像机,电场传感器和磁场传感器观察到从356米高塔开始的向上负闪光的两个初始向上的正面领导者(占用)。尽管测量的电场的波形是饱和的,但是相机图像和磁场均显示两个上面的两个逐步在其向上移动台中具有明显的特性。与上方相关联的磁场的特征在于,随着领导者向上移动,这是一系列快速改变的双极脉冲叠加在缓慢增加的连续组分上,这与其高速相机图像的光强度变化很好。两个领导者的2-D步长和步长速度分别估计在0.5-3μm和1.1-9.4×105m / s的范围内。还估计了领导者发光通道的半径。通道半径在引导云之后首先显示了前向上移动阶段的稳定增加的趋势,然后在向前移动阶段,然后在引导云连接后4-5次收缩和膨胀过程。通道扩展和收缩速度在2-9×104m / s的范围内。特别是,通道半径随着高度的增加而呈现出明显的趋势,随着塔顶左右的塔顶,5.6-8.4米的高度范围为2.8-3.5米。在塔尖高于24米。通道半径的这种特征与文献中的领导者鞘的概念非常一致。

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  • 作者单位

    Department of Building Service Engineering The Hong Kong Polytechnic University Hong Kong;

    Department of Building Service Engineering The Hong Kong Polytechnic University Hong Kong;

    Department of Building Service Engineering The Hong Kong Polytechnic University Hong Kong;

    Shenzhen Meteorological Services Center Shenzhen China;

    Shenzhen Meteorological Services Center Shenzhen China;

    Department of Building Service Engineering The Hong Kong Polytechnic University Hong Kong;

    Department of Building Service Engineering The Hong Kong Polytechnic University Hong Kong;

    Department of Building Service Engineering The Hong Kong Polytechnic University Hong Kong;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学 ;
  • 关键词

    The Spatial; Evolution of Upward; Positive Stepped;

    机译:空间;向上的演变;积极的阶梯;

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