GSTDTAP  > 地球科学
DOI10.1016/j.atmosres.2019.03.027
Effect of the surface wind flow and topography on precipitating cloud systems over the Andes and associated Amazon basin: GPM observations
Kumar, Shailendra; Vidal, Yamina-Silva; Moya-Alvarez, Aldo S.; Martinez-Castro, Daniel
2019-09-01
发表期刊ATMOSPHERIC RESEARCH
ISSN0169-8095
EISSN1873-2895
出版年2019
卷号225页码:193-208
文章类型Article
语种英语
国家Peru
英文摘要

The characteristics of the precipitation under the influence of topography and surface wind flow are investigated over South America. Here the precipitating cloud systems (PCSs) are identified using the Global Precipitation Measurement Precipitation Radar (GPM-PR) data, which provides the three dimensional radar reflectivity factor (Ze), rain rate, drop size and droplet concentration. For each PCSs the surface wind properties are estimated using European Center for Medium-Range Weather Forecast Interim data. Based on the direction of surface flow the PCSs are classified into five categories. Over the South America the near surface wind flow transports the moisture from Amazon basin to east flank of Andes and validated here. The directional surface flow decides the occurrences of the PCSs, as upslope consists of the higher and larger PCSs at the peak of Andes compared to downslope flow. The directional flow suggests that northern Andes consists of pronounced bright band characteristics compared to southern Andes, and upslope and easterly flow have higher probability of rain at the eastern slope of Andes compared to westerly and downslope flow in northern Andes. The results show that orography also modulates the precipitation characteristics under different directional flow over and near the Andes. Eastern slope of Andes has higher rain rate compared to western slope of Andes in most of the directional flow. Orographically forced moisture loaded flow, over the eastern slope of Andes causing the higher rain rate, drop radius and droplet concentration in northern Andes. At the low lands, effective drop radius and droplet concentration show the opposite characteristics, and effective drop radius (concentration) is least (highest) except for the downslope flow over the northern Andes. The results of DSD parameters along with rainfall intensity show the microphysical evolution of the precipitation under the complex orography over the Andes mountain. The present study suggests that in future, surface flow must be considered for studying the orographic precipitation in numerical modeling.


英文关键词GPM Precipitation radar ERA surface wind Andes Orography Radar reflectivity factor DSD parameters
领域地球科学
收录类别SCI-E
WOS记录号WOS:000470049300018
WOS关键词MESOSCALE CONVECTIVE SYSTEMS ; AMERICAN LOW-LEVEL ; OROGRAPHIC PRECIPITATION ; SUMMERTIME PRECIPITATION ; VERTICAL STRUCTURE ; MONSOON RAINFALL ; TIBETAN PLATEAU ; LIFE-CYCLE ; TRMM ; REGION
WOS类目Meteorology & Atmospheric Sciences
WOS研究方向Meteorology & Atmospheric Sciences
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/186321
专题地球科学
作者单位Inst Geophys, Lima, Peru
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Kumar, Shailendra,Vidal, Yamina-Silva,Moya-Alvarez, Aldo S.,et al. Effect of the surface wind flow and topography on precipitating cloud systems over the Andes and associated Amazon basin: GPM observations[J]. ATMOSPHERIC RESEARCH,2019,225:193-208.
APA Kumar, Shailendra,Vidal, Yamina-Silva,Moya-Alvarez, Aldo S.,&Martinez-Castro, Daniel.(2019).Effect of the surface wind flow and topography on precipitating cloud systems over the Andes and associated Amazon basin: GPM observations.ATMOSPHERIC RESEARCH,225,193-208.
MLA Kumar, Shailendra,et al."Effect of the surface wind flow and topography on precipitating cloud systems over the Andes and associated Amazon basin: GPM observations".ATMOSPHERIC RESEARCH 225(2019):193-208.
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