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A macroscopic physical model for self-initiated upward leaders from tall grounded objects and its application

机译:高地物体自发向上引导的宏观物理模型及其应用

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This paper presents a macroscopic physical model that can simulate an upward leader initiated from a tall grounded object under thunderclouds. Based on a tri-layer leader channel structure and the energy conservation law, a new equation for estimating the upward leader propagation speed is proposed. Equations for modeling other physical parameters, such as the leader line charge density, leader core radius, leader corona sheath radius, leader current, leader electric field and leader conductance, are also proposed. Besides, a set of initiation and survival criteria for a steady self-initiated upward leader from a tall grounded object is suggested. Based on the suggested criteria and the proposed model, the critical corona and charge amount as well as the minimum height for successful initiation of an upward positive leader (UPL) from a tall grounded object are evaluated and discussed. The model is then used to investigate the general properties of UPLs self-initiated from tall grounded objects with and without the effect of corona space charge layer near the ground under different thunderstorm conditions. The modelling results can well explain the leader properties observed in literature. The model is further tested with two set of experiment data and very promising results are obtained.
机译:本文提出了一种宏观物理模型,该模型可以模拟雷雨云下一个高地面物体发起的向上引导。基于三层前导通道结构和能量守恒定律,提出了一种新的方程式,用于估计前导向上传播速度。还提出了用于建模其他物理参数的方程,例如引导线电荷密度,引导线芯半径,引导线电晕鞘半径,引导线电流,引导线电场和引导线电导。此外,还提出了一套针对高地物体的稳定自发向上引导者的起始和生存标准。基于建议的标准和建议的模型,评估并讨论了临界电晕和电荷量,以及成功启动从高高的接地物体上发起的向上正向引线(UPL)的最小高度。然后,使用该模型研究在不同的雷暴条件下,在有和没有电晕空间电荷层影响的情况下,由高地面物体自发引发的UPL的一般特性。建模结果可以很好地解释文献中观察到的领导者特性。使用两组实验数据进一步测试了该模型,并获得了非常有希望的结果。

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