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作 者:Ming LI Yongheng BI Yonghai SHEN Yinan WANG Ciren Nima Tianlu CHEN Daren LYU
机构地区:[1]Key Laboratory for Cosmic Rays of the Ministry of Education,Tibet University,Lhasa 850000,China [2]Key Laboratory of Middle Atmosphere and Global Environment Observation(LAGEO),Institute of Atmospheric Physics,Chinese Academy of Science,Beijing 100029,China [3]University of Chinese Academy of Sciences,Beijing 100049,China
出 处:《Advances in Atmospheric Sciences》2024年第9期1721-1734,共14页大气科学进展(英文版)
基 金:funded by the second Tibetan Plateau Scientific Expe-dition and Research Program(2019QZKK0604).
摘 要:Raindrop size distribution(DSD)plays a crucial role in enhancing the accuracy of radar quantitative precipitation estimates in the Tibetan Plateau(TP).However,there is a notable scarcity of long-term,high-resolution observations in this region.To address this issue,long-term observations from a two-dimensional video disdrometer(2DVD)were leveraged to refine the radar and satellite-based algorithms for quantifying precipitation in the hinterland of the TP.It was observed that weak precipitation(R<1,mm h-1)accounts for 86%of the total precipitation time,while small raindrops(D<2 mm)comprise 99%of the total raindrop count.Furthermore,the average spectral width of the DSD increases with increasing rain rate.The DSD characteristics of convective and stratiform precipitation were discussed across five different rain rates,revealing that convective precipitation in Yangbajain(YBJ)exhibits characteristics similar to maritime-like precipitation.The constrained relationships between the slopeΛand shapeμ,D_(m)and N_(w)of gamma DSDs were derived.Additionally,we established a correlation between the equivalent diameter and drop axis ratio and found that raindrops on the TP attain a nearly spherical shape.Consequently,the application of the rainfall retrieval algorithms of the dual-frequency precipitation radar in the TP is improved based on the statistical results of the DSD.
关 键 词:Tibetan Plateau raindrop size distribution 2DVD dual frequency radar microphysical features
分 类 号:P412.13[天文地球—大气科学及气象学]
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