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山西春季一次层状冷云的微物理结构特征 被引量:8
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作者 封秋娟 李培仁 +3 位作者 侯团结 申东东 刘伟 晋立军 《大气科学学报》 CSCD 北大核心 2014年第4期449-458,共10页
利用2009年3月11日机载DMT(droplet measurement technology)粒子测量系统获取的山西层状云探测资料,结合天气、卫星、雷达等,分析了降水性冷云的宏微观结构特征。结果表明,降水云系由高层云和层积云组成,液态含水量变化范围为0~0.42g/m... 利用2009年3月11日机载DMT(droplet measurement technology)粒子测量系统获取的山西层状云探测资料,结合天气、卫星、雷达等,分析了降水性冷云的宏微观结构特征。结果表明,降水云系由高层云和层积云组成,液态含水量变化范围为0~0.42g/m3。CDP(cloud droplet probe;云粒子探头)和CIP(cloud imaging probe;云粒子图像探头)观测到的粒子数浓度偏大,CDP探测到最大粒子数浓度为451.93cm-3,CIP探测到最大粒子数浓度为162.78L-1。本次探测适宜的人工增雨作业温度区间为-11.4^-7℃、-4.4~0℃。高层云上部以冰晶的核化和凝华增长为主;高层云的中下部为冰雪晶活跃增长层;通过凝华、碰并机制高层云降落的冰雪晶粒子在层积云进一步长大。层状云水平分布不均匀特性很明显。统计云滴谱谱型分布发现,双峰型、多峰型出现几率较高,指数型主要出现在层积云的中部和顶部,出现单峰型时LWC(liquid water concentration;液态水含量)小于0.03g/m3或大于0.1g/m3。 展开更多
关键词 层状冷云 微物理结构特征 飞机探测
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Cloud vertical structures associated with precipitation magnitudes over the Tibetan Plateau and its neighboring regions 被引量:7
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作者 YAN Ya-Fei WANG Xiao-Cong LIU Yi-Min 《Atmospheric and Oceanic Science Letters》 CSCD 2018年第1期44-53,共10页
Cloud vertical structures and precipitation over the Tibetan Plateau (TP) are analyzed and compared with its neighboring land and tropical oceans based on CloudSat/CALIPSO satellite measurements and TRMM precipitati... Cloud vertical structures and precipitation over the Tibetan Plateau (TP) are analyzed and compared with its neighboring land and tropical oceans based on CloudSat/CALIPSO satellite measurements and TRMM precipitation data. Results show that the TP generally has a compression effect on cloud systems, as manifested by a shrinking cloud depth and lowering cloud top. Precipitation is weaker over the TP than its neighboring regions and exhibits large seasonal variations. In summer, cloud ice particles over the TP are mostly located at lower altitude (5-10 km), with a larger variability of sizes and aggregation (particle number concentration) under no-rain conditions compared to other regions. Ice water content becomes abundant and the number concentration tends to be dense at higher altitudes when precipitation is enhanced. However, even for heavy rainstorms, the aggregation is most likely between 100 and 250 L-1, whereas it can reach as high as 500 L-1 over its neighboring land and tropical oceans. Given the same magnitude of precipitation, the spectrum of ice particle sizes is found to be wider over the TP than other regions. 展开更多
关键词 CloudSat/CALIPSO cloudmacrophysics cloudmicrophysics cloud verticalstructures PRECIPITATION Tibetan Plateau
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