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Analysis on the Meso-scale Characteristics of a Hail Process in Linyi Area
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作者 LIU Ying-jie CAO Xing-feng +2 位作者 ZHU Yi-qing WANG Qing-hua LI Bing-wen 《Meteorological and Environmental Research》 CAS 2011年第6期41-45,50,共6页
[Objective] The research aimed to study the meso-scale characteristics of a hail process in Linyi area. [Method] By comprehensively using MICAPS conventional observation data, automatic encryption ground station, MM5 ... [Objective] The research aimed to study the meso-scale characteristics of a hail process in Linyi area. [Method] By comprehensively using MICAPS conventional observation data, automatic encryption ground station, MM5 model product and Doppler weather radar data, a strong convective hail weather process which happened in Shandong Peninsula and southeast of Shandong on May 30, 2010 was analyzed. The circulation background and physical mechanism of strong convection weather occurrence, the features of meso- and micro-scale systems were discussed. Some occurrence and development rules of such weather were found. [Result] The strong convective weather was mainly affected by the cold vortex and translot. The high-altitude northwest airflow, low-level southwest airflow, dry and cold air at the high layer, warm and wet air at the low layer, forward-tilting trough caused the strong convective weather. The radar echo analysis showed that the radar echo in the process belonged to the typical multi-monomer windstorm echo, and the strong echo zone was in the forefront of echo. When the convection development was the strongest, the echo intensity reached 65 dBz, and the echo top height surpassed 11 km. As the development of windstorm monomer, the big-value zone of vertical liquid water content product had the jumping formation and disappearance. Moreover, there was obvious weak echo zone. The windstorm monomer moved to the southeast direction as the precipitation system. In the right front of monomer moving direction, there was hook echo feature. The evolution characteristics of radial speed field at the different elevation angles before and after the hail weather occurrence were analyzed. It was found that the radial speed field had some premonitory variations before the hail weather occurrence. Doppler radar product was used to improve the initial field of MM5 model, which could improve the forecast effect in the certain degree and the accuracy of short-time forecast and nowcasting. [Conclusion] The research accumulated the experience for the short-term forecast and nowcasting work of strong convective weather in future. 展开更多
关键词 HAIL strong convective weather meso-scale characteristic Linyi area China
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中国中小尺度强对流天气气候学特征 被引量:11
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作者 薛晓颖 任国玉 +2 位作者 孙秀宝 任玉玉 余予 《气候与环境研究》 CSCD 北大核心 2019年第2期199-213,共15页
中小尺度强对流天气具有极强的破坏力,了解其气候学特征对于预测、预报和影响评价都具有实际意义。利用1961~2015年的2332个高密度逐月国家级气象站观测资料,分析了中国大陆3种常见中小尺度强对流天气(雷暴、闪电、冰雹)在年、季、月... 中小尺度强对流天气具有极强的破坏力,了解其气候学特征对于预测、预报和影响评价都具有实际意义。利用1961~2015年的2332个高密度逐月国家级气象站观测资料,分析了中国大陆3种常见中小尺度强对流天气(雷暴、闪电、冰雹)在年、季、月尺度上发生日数的时间变化规律和空间分布特征。结果表明:全国年平均雷暴、闪电和冰雹发生频率分别为39.23 d/a、20.56 d/a和1.07 d/a;雷暴和闪电主要发生在夏季3个月,雷暴日数7月最多,闪电日数8月最多;冰雹主要发生每年5~9月,6月发生频率最高;雷暴和闪电的高发区分布基本一致,主要集中在华南和西南,青藏高原也是雷暴的高发区域之一;冰雹的高发区主要集中在青藏高原、内蒙古高原东部以及中西部山地,而东南沿海地区发生频率则较低。进一步分析发现,我国雷暴和冰雹出现频率随海拔高度增加而明显增加,冰雹和海拔高度有更好的对应关系,二者增加速率分别为2.87 d/500 m和1.80 d/500 m,表明地势高度对这两种强对流天气形成和发展具有重要影响。 展开更多
关键词 中小尺度强对流 雷暴 闪电 冰雹 地形 气候学特征
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