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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Mapping thunder sources by inverting acoustic and electromagnetic observations
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Mapping thunder sources by inverting acoustic and electromagnetic observations

机译:通过反转声学和电磁观测来绘制雷声源图

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摘要

We present a new method of locating current flow in lightning strikes by inversion of thunder recordings constrained by Lightning Mapping Array observations. First, radio frequency (RF) pulses are connected to reconstruct conductive channels created by leaders. Then, acoustic signals that would be produced by current flow through each channel are forward modeled. The recorded thunder is considered to consist of a weighted superposition of these acoustic signals. We calculate the posterior distribution of acoustic source energy for each channel with a Markov Chain Monte Carlo inversion that fits power envelopes of modeled and recorded thunder; these results show which parts of the flash carry current and produce thunder.We examine the effects of RF pulse location imprecision and atmospheric winds on quality of results and apply this method to several lightning flashes over the Magdalena Mountains in New Mexico, USA. This method will enable more detailed study of lightning phenomena by allowing researchers to map current flow in addition to leader propagation.
机译:我们提出了一种通过雷电记录阵列观测值约束的雷电记录反演来定位雷击中的电流的新方法。首先,将射频(RF)脉冲连接到重建由引线创建的导电通道。然后,将对通过每个通道的电流产生的声信号进行正向建模。记录的雷声被认为由这些声信号的加权叠加组成。我们用适合建模和记录的雷电功率包络的马尔可夫链蒙特卡罗反演计算每个通道的声源能量的后验分布;这些结果表明了闪光灯的哪些部分载有电流并产生雷声。我们研究了射频脉冲定位不精确和大气风对结果质量的影响,并将此方法应用于美国新墨西哥州马格达莱纳山脉上的几次闪电。通过允许研究人员绘制除引线传播之外的电流,这种方法将使对雷电现象的更详细研究成为可能。

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