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2004年北京地区一次扬沙天气过程数值预报分析 被引量:1
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作者 程丛兰 张小玲 +2 位作者 王迎春 刘伟东 徐晓峰 《灾害学》 CSCD 2005年第3期88-93,共6页
本文在对沙源和实况气象场分析的基础上,利用北京城市气象研究所发展的区域沙尘耦合模式,对2004年3月29日北京及周边地区扬沙天气过程进行数值研究。模式预报出大风、垂直速度等气象条件要素演变,表明导致此次沙尘过程的发生、发展主要... 本文在对沙源和实况气象场分析的基础上,利用北京城市气象研究所发展的区域沙尘耦合模式,对2004年3月29日北京及周边地区扬沙天气过程进行数值研究。模式预报出大风、垂直速度等气象条件要素演变,表明导致此次沙尘过程的发生、发展主要因素是大风、上升气流等。从天气实况沙尘图与预报沙尘区随时间演变过程看,模式预报的沙尘范围和强度与实况结果基本相符;沙尘数值预报模式能够较好地预报出此次沙尘过程发生的时间、地点、范围和移动路径等,较准确地描述了本次沙尘过程的形成演变和移动等特征。从模式预报的北京地区沙尘浓度的垂直廓线和沙尘强度表明本次沙尘的沙源以本地扬沙为主。 展开更多
关键词 扬沙 大风 上升气流 区域沙尘模式 数值预报 北京地区
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Differences between Convective and Stratiform Precipitation Budgets in a Torrential Rainfall Event 被引量:6
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作者 Yongjie HUANG Yaping WANG Xiaopeng CUI 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2019年第5期495-509,共15页
Differences in rainfall budgets between convective and stratiform regions of a torrential rainfall event were investigated using high-resolution simulation data produced by the Weather Research and Forecasting(WRF) mo... Differences in rainfall budgets between convective and stratiform regions of a torrential rainfall event were investigated using high-resolution simulation data produced by the Weather Research and Forecasting(WRF) model. The convective and stratiform regions were reasonably separated by the radar-based convective–stratiform partitioning method, and the threedimensional WRF-based precipitation equation combining water vapor and hydrometeor budgets was further used to analyze the rainfall budgets. The results showed that the magnitude of precipitation budget processes in the convective region was one order larger than that in the stratiform region. In convective/stratiform updraft regions, precipitation was mainly from the contribution of moisture-related processes, with a small negative contribution from cloud-related processes. In convective/stratiform downdraft regions, cloud-related processes played positive roles in precipitation, while moisture-related processes made a negative contribution. Moisture flux convergence played a dominant role in the moisture-related processes in convective or stratiform updraft regions, which was closely related to large-scale dynamics. Differences in cloud-related processes between convective and stratiform regions were more complex compared with those in moisture-related processes.Both liquid-and ice-phase microphysical processes were strong in convective/stratiform updraft regions, and ice-phase processes were dominant in convective/stratiform downdraft regions. There was strong net latent heating within almost the whole troposphere in updraft regions, especially in the convective updraft region, while the net latent heating(cooling) mainly existed above(below) the zero-layer in convective/stratiform downdraft regions. 展开更多
关键词 CONVECTIVE RAINFALL STRATIFORM RAINFALL precipitation BUDGET updraft region downdraft region
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