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An observational case study of mesoscale atmospheric circulations induced by soil moisture

机译:土壤水分引起的中尺度大气环流的观测案例研究

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摘要

Numerical and theoretical studies have shown that mesoscale gradients in land surface properties can induce circulations in the atmosphere. This study provides the first well-resolved observations of such flows induced by soil moisture from recent rainfall, and is based on aircraft data in the Sahel. Satellite imagery was used to identify fine scale soil moisture features within a wet zone spanning 160 km. Above the wet soil, the planetary boundary layer was up to 3 K cooler, 3 gkg(-1) moister and extended to only half the depth of nearby drier areas. Mesoscale perturbations to the background flow were found, consistent with low level divergence over wet soil and convergence in drier areas. The soil moisture and atmospheric wind patterns were statistically coherent on wavelengths down to 20 km. These results suggest that mesoscale convergence lines forced by soil moisture may play a significant role in the meteorology of the Sahel.
机译:数值和理论研究表明,地表特性的中尺度梯度会引起大气环流。这项研究基于萨赫勒地区的飞机数据,首次很好地解决了由近期降雨引起的土壤水分诱发的此类流动的观测。卫星图像被用来识别160 km湿区内的细尺度土壤水分特征。在湿润的土壤上方,行星边界层的温度最高可降低3 K,潮湿度为3 gkg(-1),并且仅延伸到附近较干燥区域深度的一半。发现了对背景流的中尺度扰动,这与湿土上的低水平散度和较干燥地区的收敛一致。在低至20 km的波长上,土壤湿度和大气风型在统计上是一致的。这些结果表明,土壤水分强迫的中尺度辐合线可能在萨赫勒地区的气象中起重要作用。

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