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首页> 外文期刊>Environmental Research Letters >Low cloud precipitation climatology in the southeastern Pacific marine stratocumulus region using CloudSat
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Low cloud precipitation climatology in the southeastern Pacific marine stratocumulus region using CloudSat

机译:使用CloudSat的东南太平洋海陆积云地区低云降水气候。

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A climatology of low cloud surface precipitation occurrence and intensity from the new CloudSat 2C-RAIN-PROFILE algorithm is presented from June 2006 through December 2010 for the southeastern Pacific region of marine stratocumulus. Results show that over 70% of low cloud precipitation falls as drizzle. Application of an empirical evaporation model suggests that 50–80% of the precipitation evaporates before it reaches the surface. Segregation of the CloudSat ascending and descending overpasses shows that the majority of precipitation occurs at night. Examination of the seasonal cycle shows that the precipitation is most frequent during the austral winter and spring; however there is considerable regional variability. Conditional rain rates increase from east to west with a maximum occurring in the region influenced by the South Pacific Convergence Zone. Area average rain rates are highest in the region where precipitation rates are moderate, but most frequent. The area average surface rain rate for low cloud precipitation for this region is ~0.22?mm?d?1, in good agreement with in situ estimates, and is greatly improved over earlier CloudSat precipitation products. These results provide a much-needed quantification of surface precipitation in a region that is currently underestimated in existing satellite-based precipitation climatologies.
机译:从2006年6月到2010年12月,通过新的CloudSat 2C-RAIN-PROFILE算法介绍了东南部平流积云的低云表面降水发生和强度的气候学。结果表明,超过70%的低云降水随毛毛雨而下降。经验蒸发模型的应用表明,有50-80%的降水在到达地面之前就已经蒸发了。 CloudSat上升和下降立交桥的隔离表明大部分降水发生在夜间。对季节周期的检查表明,在南方的冬季和春季,降水最为频繁。但是,区域差异很大。有条件的降雨率从东向西增加,在受南太平洋汇聚区影响的区域内出现最大值。该地区的平均降雨率最高,该地区的降水率适中,但频率最高。该地区低云降水的区域平均地表降雨率为〜0.22?mm?d?1,与原位估计吻合良好,并且比早期CloudSat降水产品有很大改善。这些结果提供了目前在现有的基于卫星的降水气候中低估的区域中非常需要的地面降水量化。

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