云贵高原一次雷暴过程电性特征及降水粒子分布的观测与分析

Zeng Yong, Xu Yi, Zou Shuping, Zhou Yunjun, Hu HaiXun, Huang Yu
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引用次数: 0

摘要

利用X波段双线极化雷达资料、大气电场资料和VLF/LF三维闪电定位资料,详细分析了发生在云贵高原平台的一次雷暴过程的电特征,并基于模糊逻辑水流星分类(FHC)对云中降水粒子进行了反演。结果表明:(1)雷暴在发展成熟阶段呈三极电荷结构,雷暴云底部存在一定范围的正电荷区;正闪云高度在1.66 ~ 24.7 km之间,负闪云高度在1.0 ~ 17.12km之间。云闪主要发生在下部正电荷区和中部负电荷区之间。雷暴电荷结构的垂直分布可以通过云闪辐射源极性的高度分布来理解。(2)在雷暴发展和成熟阶段,雷暴云中不同粒子的数量和分布高度存在一定差异。霰粒子和冰晶的演化特征与雷暴的发展和成熟阶段一致。结合大气电场和闪电定位资料,霰粒子和冰晶粒子的演变与雷暴的起电性密切相关。(3)从不同粒子的垂直分布特征可以观察到,雷雨云下部正电荷区的强度很可能由霰粒子的数量决定。霰-冰电荷机制能较好地解释雷暴三极子电荷结构的形成。(4) VLF检测到的云闪源信息。/LF三维闪电定位系统对雷暴云电荷区总体分布有一定指示作用。今后有必要深入挖掘云闪信息,为雷暴电荷结构研究提供支持
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Observation and Analysis of the Electrical Characteristic and Precipitation Particle Distribution of a Thunderstorm Process in Yun-Gui Plateau Region
Using X band dual line polarization radar data, atmospheric electric field data and VLF/LF three-dimensional lightning localization data, the electrical characteristic of a thunderstorm process occurring in the platform of the Yunnan-Guizhou Plateau were analyzed in detail, and the precipitation particles in the cloud were inverted based on the fuzzy logic hydrometeor classification(FHC). The results show that: (1) The thunderstorm was tripole charge structure in the development and maturity stage, and there was a certain range of positive charge region at the bottom of thunderstorm cloud. The height of the positive cloud flash was between 1.66˜24.7 km, and the height of the negative cloud flash was between 1.0˜17.12km.The cloud flash mainly occured between the lower positive charge region and the middle negative charge region,.The vertical distribution of the thunderstorm charge structure can be understood by the height distribution of the cloud flash radiation source polarity. (2) In the development and maturity stage of thunderstorm, there were some differences in the number and distribution height of different particles in thunderstorm cloud. The evolution characteristic of graupel particles and ice crystals were consistent with the development and maturity stages of thunderstorm. Combined with atmospheric electric field and lightning location data, the evolution of graupel particle and ice crystal particle was closely related to the electrification of thunderstorm. (3) It can be observed from the vertical distribution characteristic of different particles that the strength of the positive charge region in the lower part of the thunderstorm cloud was most likely determined by the number of graupel particle. The graupel-ice charging mechanism can better interpret the formation of the tripole charge structure of thunderstorm. (4) The cloud flash source information detected by the VLF./LF three-dimensional lightning location system has a certain indication on the general distribution of the thunderstorm cloud charge region. It is necessary to dig deep into the cloud flash information in the future to provide support for the thunderstorm charge structure research
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