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通过来自湿对流的再生冷池外流实现的水汽跨撒哈拉输送。

Cross-Saharan transport of water vapor via recycled cold pool outflows from moist convection.

作者信息

Trzeciak Tomasz M, Garcia-Carreras Luis, Marsham John H

机构信息

School of Earth and Environment University of Leeds Leeds UK.

School of Earth and Environment University of Leeds Leeds UK; National Centre for Atmospheric Science Leeds UK.

出版信息

Geophys Res Lett. 2017 Feb 16;44(3):1554-1563. doi: 10.1002/2016GL072108. Epub 2017 Feb 4.

Abstract

Very sparse data have previously limited observational studies of meteorological processes in the Sahara. We present an observed case of convectively driven water vapor transport crossing the Sahara over 2.5 days in June 2012, from the Sahel in the south to the Atlas in the north. A daily cycle is observed, with deep convection in the evening generating moist cold pools that fed the next day's convection; the convection then generated new cold pools, providing a vertical recycling of moisture. Trajectories driven by analyses were able to capture the direction of the transport but not its full extent, particularly at night when cold pools are most active, and analyses missed much of the water content of cold pools. The results highlight the importance of cold pools for moisture transport, dust and clouds, and demonstrate the need to include these processes in models in order to improve the representation of Saharan atmosphere.

摘要

此前,极为稀少的数据限制了对撒哈拉沙漠气象过程的观测研究。我们展示了一个观测案例,2012年6月,对流驱动的水汽输送在2.5天内跨越撒哈拉沙漠,从南部的萨赫勒地区到北部的阿特拉斯山脉。观测到了日循环,傍晚的深对流产生了潮湿的冷池,为次日的对流提供了条件;对流随后又产生了新的冷池,实现了水汽的垂直循环。分析得出的轨迹能够捕捉到输送方向,但无法完全捕捉其范围,尤其是在冷池最为活跃的夜间,而且分析遗漏了冷池的大部分含水量。研究结果突出了冷池在水汽输送、沙尘和云层方面的重要性,并表明有必要将这些过程纳入模型,以改进对撒哈拉沙漠大气的描述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b9c1/5347875/f502d811fe5f/GRL-44-1554-g001.jpg

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