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Taklimakan Desert nocturnal low-level jet: climatology and dust activity

机译:塔克拉玛干沙漠夜间夜间低空急流:气候学和沙尘活动

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While nocturnal low-level jets (NLLJs) occur frequently in many parts of the world, the occurrence and other detailed characteristics of NLLJs over the Taklimakan Desert (TD) are not well known. This paper presents a climatology of NLLJs and coincident dust over the TD by analyzing multi-year ERA-Interim reanalysis and satellite observations. It is found that the ERA-Interim dataset can capture the NLLJs' features well by comparison with radiosonde data from two surface sites. The NLLJs occur in more than 60?% of nights, which are primarily easterly to east-northeasterly. They typically appear at 100 to 400?m above the surface with a speed of 4 to 10?m?ssup?1/sup. Most NLLJs are located above the nocturnal inversion during the warm season, while they are embedded in the inversion layer during the cold season. NLLJs above the inversion have a strong annual cycle with a maximum frequency in August. We also quantify the convective boundary layer (CBL) height and construct an index to measure the magnitude of the momentum in the CBL. We find that the magnitude of momentum in the lower atmosphere from the top of the surface layer to the top of mixed layer is larger for NLLJ cases than for non-NLLJ cases, and in the warm season the downward momentum transfer process is more intense and rapid. The winds below the NLLJ core to the desert surface gain strength in summer and autumn, and these summer and autumn winds are coincident with an enhancement of aerosol optical depth. This indicates that the NLLJ is an important mechanism for dust activity and transport during the warm season over the Taklimakan.
机译:尽管夜空低空急流(NLLJ)在世界许多地方频繁发生,但在塔克拉玛干沙漠(TD)上空低空急流的发生和其他详细特征并不为人所知。本文通过分析多年的ERA-中期再分析和卫星观测结果,介绍了TD上NLLJs和相伴尘埃的气候。通过与来自两个地面站点的探空仪数据进行比较,发现ERA-Interim数据集可以很好地捕获NLLJ的特征。 NLLJ发生在60%以上的夜晚,主要发生在东风到东北风。它们通常在表面上方100至400?m处出现,速度为4至10?m?s ?1 。大部分NLLJ在温暖季节位于夜间反转的上方,而在寒冷季节则埋藏在反转层的上方。反演以上的NLLJ具有很强的年度周期,最高频率出现在八月。我们还量化了对流边界层(CBL)的高度,并构造了一个指标来测量CBL中动量的大小。我们发现,NLLJ情况下从表层顶部到混合层顶部的低层大气动量的大小比非NLLJ情况大,并且在温暖季节,向下的动量传递过程更加强烈,并且快速。 NLLJ核心下方沙漠表面的风在夏季和秋季增强,这些夏季和秋季的风与气溶胶光学深度的增加同时发生。这表明NLLJ是塔克拉玛干地区暖季尘埃活动和运输的重要机制。

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