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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Ship-borne LF-VLF oceanic lightning observations andmodeling
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Ship-borne LF-VLF oceanic lightning observations andmodeling

机译:船载LF-VLF海洋闪电观测和建模

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Approximately 90% of natural lightning occurs over land, but recent observations, using Global Lightning Detection (GLD360) geolocation peak current estimates and satellite optical data, suggested that cloud-to-ground flashes are on average stronger over the ocean. We present initial statistics from a novel experiment using a Low Frequency (LF) magnetic field receiver system installed aboard the National Oceanic Atmospheric Agency (NOAA) Ronald W. Brown research vessel that allowed the detection of impulsive radio emissions from deep-oceanic discharges at short distances. Thousands of LF waveforms were recorded, facilitating the comparison of oceanic waveforms to their land counterparts. A computationally efficient electromagnetic radiation model that accounts for propagation over lossy and curved ground is constructed and compared with previously published models. We include the effects of Earth curvature on LF ground wave propagation and quantify the effects of channel-base current risetime, channel-base current falltime, and return stroke speed on the radiated LF waveforms observed at a given distance. We compare simulation results to data and conclude that previously reported larger GLD360 peak current estimates over the ocean are unlikely to fully result from differences in channel-base current risetime, falltime, or return stroke speed between ocean and land flashes.
机译:大约90%的自然闪电发生在陆地上,但是最近的观测结果使用全球闪电探测(GLD360)地理位置峰值电流估计值和卫星光学数据,表明从海洋到地面的地面到地面的闪光平均更强。我们提供了一项新颖的实验的初步统计数据,该实验使用的是安装在美国国家海洋大气局(NOAA)罗纳德·布朗(Ronald W. Brown)研究船上的低频(LF)磁场接收器系统,该系统可以在短时间内检测到深海排放的脉冲无线电发射距离。记录了数千个LF波形,便于将海洋波形与其陆地对应物进行比较。构建了一种计算有效的电磁辐射模型,该模型考虑了在有损和弯曲地面上的传播,并与先前发布的模型进行了比较。我们包括地球曲率对LF地面波传播的影响,并量化在给定距离观察到的辐射基LF波形的通道基电流上升时间,通道基电流下降时间和返回冲程速度的影响。我们将仿真结果与数据进行比较,得出的结论是,以前报告的更大的GLD360海洋峰值电流估计不太可能完全由通道基准电流上升时间,下降时间或海洋与陆地闪动之间的回程速度差异引起。

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