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基于卫星遥感的全球洋面降水暖云与非降水暖云的云参数差异 被引量:4
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作者 谢磊 刘奇 《中国科学技术大学学报》 CAS CSCD 北大核心 2017年第12期1006-1014,共9页
利用中分辨成像光谱仪(Aqua/MODIS)和云廓线雷达(CloudSat/CPR)两部星载仪器的准同步探测资料,分析了全球洋面暖云覆盖量和暖云降水频率的空间分布特征.并就暖云占优的多个中低纬海域,对降水暖云和非降水暖云的云微物理性质进行了对比,... 利用中分辨成像光谱仪(Aqua/MODIS)和云廓线雷达(CloudSat/CPR)两部星载仪器的准同步探测资料,分析了全球洋面暖云覆盖量和暖云降水频率的空间分布特征.并就暖云占优的多个中低纬海域,对降水暖云和非降水暖云的云微物理性质进行了对比,特别分析了由MODIS云滴有效半径(R16,R21,R37)相对大小所指示的云层顶部云水垂直结构在两类云之间的差异.研究结果表明,降水暖云与非降水暖云的云顶温度、光学厚度、云滴有效半径、云水路径等参数的有效范围接近一致,但均值存在明显差异.降水暖云的云顶高度显著偏高,其光学厚度、云滴有效半径、云水路径显著大于非降水暖云.针对6种云水垂直结构模态的初步统计结果显示,对应最大降水概率的模态为R37<R21<R16.该观测事实揭示了洋面暖云发展至降水阶段时,云层上部的云滴尺寸和云水含量多呈现为向下增长,该结果也反映了多光谱云参数反演资料在暖云降水识别中的潜在价值. 展开更多
关键词 暖云 降水 非降水 云滴有效半径 云水垂直结构
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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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