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首页> 外文期刊>Journal of atmospheric and solar-terrestrial physics >Three-dimensional lightning observations of cloud-to-ground flashes using broadband interferometers
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Three-dimensional lightning observations of cloud-to-ground flashes using broadband interferometers

机译:使用宽带干涉仪对云对地闪光进行三维闪电观测

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For the first time, the broadband radio interferometers have been developed to locate the sources of VHF/UHF radiation from lightning discharges in three spatial dimensions (3D) and time. The lightning observations have been conducted in Darwin, Australia during summer 1998 at two different sites. Each site consisted of a broadband interferometer and an electric field sensor as well as a GPS receiver. The triangulation scheme was proposed to estimate the 3D source locations. The system was able to observe different types of lightning discharges and estimate the initial and subsequent leader progression speeds from three negative cloud-to-ground lightning flashes. The initial leaders had progression speeds of about 10~5 m s~(-1), typical for negatively charged initial leaders. The preliminary activity prior to the initial leader progression was also recognized. In cloud K-processes, a dart leader and an attempted leader were also found to be negative-polarity discharges and they propagated either upward or downward to ground with the estimated speeds of about 10~6 s~(-1), in agreement with previous studies. Two of the flashes contained subsequent leaders that took different channels and created new terminations on ground. These subsequent leaders required long duration to progress downward (about 35 and 65 ms) with the same speed as typical initial leaders before reaching the ground.
机译:首次开发了宽带无线电干涉仪,用于在三个空间维度(3D)和时间中定位雷电放电产生的VHF / UHF辐射源。 1998年夏季在澳大利亚达尔文市的两个不同地点进行了闪电观测。每个站点都包括一个宽带干涉仪,一个电场传感器以及一个GPS接收器。提出了三角剖分方案以估计3D源位置。该系统能够观察到不同类型的雷电放电,并从三个负面的云对地雷电闪光估计初始和随后的领导者前进速度。初始领导者的前进速度约为10〜5 m s〜(-1),这是带负电荷的初始领导者的典型速度。最初的领导者发展之前的初步活动也得到认可。在云K过程中,还发现飞镖先导和尝试先导是负极性放电,它们以大约10〜6 s〜(-1)的估计速度向上或向下传播到地面。之前的学习。两次闪烁包含随后的领导人,这些领导人采取了不同的渠道,并在地面上创造了新的终端。这些后续的领导者需要很长的时间才能以下降的速度(大约35和65毫秒)以与典型初始领导者相同的速度降落到地面。

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