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首页> 外文期刊>Radiophysics and quantum electronics >Fractal Model of a Compact Intracloud Discharge. II. Specific Features of Electromagnetic Emission
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Fractal Model of a Compact Intracloud Discharge. II. Specific Features of Electromagnetic Emission

机译:紧凑型Intracloud放电的分形模型。二。电磁辐射的特定特征

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We examine the features of the electromagnetic emission of a compact intracloud discharge (CID) within the framework of the fractal approach [1] described in the first part of the article. Compact intracloud discharge is considered as the result of electric interaction of two bipolar streamer-type structures previously developed in the regions of a strong electric field inside the thundercloud. To estimate the electromagnetic emission of the discharge, the complex tree-like structure of the electric currents at the preliminary and main stages of CID was represented as the sum of a relatively slowly varying large-scale linear mean component and fast small-scale constituents corresponding to the initial formation of elementary conductive channels of the discharge tree. Mean linear current of the discharge is considered as an effective source of the VLF/LF emission at both the preliminary and main stages of a CID. Electrostatic, induction, and radiation components of the electric field at different distances from the mean current are calculated taking into account specific features of both stages of the discharge within the framework of the transmission-line model. It is shown that at the preliminary stage only the electrostatic component can mainly be detected, whereas at the main stage all the above components of the electric field can be reliably measured. Dependence of the radiation electric field at the main stage on the length of the discharge channel and propagation velocity of the current front is analyzed. It is found that due to the bi-directional expansion of the current at the main stage of a CID the radiation field pulse remains narrow in a wide range of discharge parameters. The small-scale currents corresponding to the initial breakdown between the neighboring cells of the discharge domain are considered as the sources of HF/VHF radiation. It is shown that HF/VHF emission at the preliminary stage is negligible as compared to emission at the main stage. It is also established that at the main stage, first, the HF/VHF emission burst correlates well with the initial peak of the VLF/LF electric field pulse and, second, its spectrum corresponds to the power law with an exponent between -2 and -1.
机译:我们在本文第一部分中描述的分形方法[1]的框架内研究了紧凑型云内放电(CID)的电磁辐射特征。紧凑的云内放电被认为是先前在雷云内部强电场区域中形成的两个双极流光型结构的电相互作用的结果。为了估算放电的电磁辐射,在CID的初始阶段和主要阶段,电流的复杂树状结构表示为相对缓慢变化的大型线性均值分量和对应的快速小型分量的总和到放电树的基本导电通道的初始形成。放电的平均线性电流被认为是CID初始阶段和主要阶段的VLF / LF发射的有效来源。考虑到传输线模型框架内放电的两个阶段的特定特征,计算了距平均电流不同距离的电场的静电,感应和辐射分量。结果表明,在初级阶段,主要只能检测到静电成分,而在初级阶段,可以可靠地测量电场的所有上述成分。分析了主级辐射电场对放电通道长度和电流前沿传播速度的依赖性。已经发现,由于电流在CID主级的双向扩展,辐射场脉冲在很宽的放电参数范围内保持狭窄。与放电域的相邻单元之间的初始击穿相对应的小规模电流被视为HF / VHF辐射源。结果表明,与主要阶段相比,初始阶段的HF / VHF排放微不足道。还可以确定,在主要阶段,首先,HF / VHF发射脉冲与VLF / LF电场脉冲的初始峰值具有很好的相关性,其次,其频谱对应于幂定律,其指数介于-2和-3之间。 -1。

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