Changes to the Appearance of Optical Lightning Flashes Observed From Space According to Thunderstorm Organization and Structure

雷雨 闪电(连接器) 闪光灯(摄影) 中尺度气象学 地球静止轨道 气象学 卫星 大气电学 对流风暴探测 风暴 环境科学 遥感 地质学 物理 光学 电场 天文 功率(物理) 量子力学
作者
Michael Peterson,Scott D. Rudlosky,Daile Zhang
出处
期刊:Journal Of Geophysical Research: Atmospheres [Wiley]
卷期号:125 (4) 被引量:19
标识
DOI:10.1029/2019jd031087
摘要

Abstract Optical lightning observations from space reveal a wide range of flash structure. Lightning imagers such as the Geostationary Lightning Mapper and Lightning Imaging Sensor measure flash appearance by recording transient changes in cloud top illumination. The spatial and temporal optical energy distributions reported by these instruments depend on the physical structure of the flash and the distribution of hydrometeors within the thundercloud that scatter and absorb the optical emissions. This study explores how flash appearance changes according to the scale and organization of the parent thunderstorms with a focus on mesoscale convective systems. Clouds near the storm edge are frequently illuminated by large optical flashes that remain stationary between groups. These flashes appear large because their emissions can reflect off the exposed surfaces of nearby clouds to reach the satellite. Large stationary flashes also occur in small isolated thunderstorms. Optical flashes that propagate horizontally, meanwhile, are most frequently observed in electrified stratiform regions where extensive layered charge structures promote lateral development. Highly radiant “superbolts” occur in two scenarios: embedded within raining stratiform regions or in nonraining boundary/anvil clouds where optical emissions can take a relatively clear path to the satellite.
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