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The vertical structure and spatial variability of lower-tropospheric water vapor and clouds in the trades

机译:贸易中低层水蒸气和云的垂直结构和空间变异

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Horizontal and vertical variability of water vapor is omnipresent in the tropics, but its interaction with cloudiness poses challenges for weather and climate models. In this study we compare airborne lidar measurements from a summer and a winter field campaign in the tropical Atlantic with high-resolution simulations to analyze the water vapor distributions in the trade wind regime, its covariation with cloudiness, and their representation in simulations. Across model grid spacing from 300m to 2.5km, the simulations show good skill in reproducing the water vapor distribution in the trades as measured by the lidar. An exception to this is a pronounced moist model bias at the top of the shallow cumulus layer in the dry winter season which is accompanied by a humidity gradient that is too weak at the inversion near the cloud top. The model's underestimation of water vapor variability in the cloud and subcloud layer occurs in both seasons but is less pronounced than the moist model bias at the inversion. Despite the model's insensitivity to resolution from hecto- to kilometer scale for the distribution of water vapor, cloud fraction decreases strongly with increasing model resolution and is not converged at hectometer grid spacing. The observed cloud deepening with increasing water vapor path is captured well across model resolution, but the concurrent transition from cloud-free to low cloud fraction is better represented at hectometer resolution. In particular, in the wet summer season the simulations with kilometer-scale resolution overestimate the observed cloud fraction near the inversion but lack condensate near the observed cloud base. This illustrates how a model's ability to properly capture the water vapor distribution does not necessarily translate into an adequate representation of shallow cumulus clouds that live at the tail of the water vapor distribution.
机译:水蒸气的水平和垂直变异是热带地区的全部,但它与云核的相互作用会带来天气和气候模型的挑战。在这项研究中,我们将夏季和冬季野外活动的空中激光乐队测量与热带大西洋的冬季田野竞选进行比较,以分析贸易风制度的水蒸气分布,其与浑浊的协变性及其在模拟中的代表。跨越300米至2.5km的模型网格间距,模拟表现出良好的技能在潮流雷达衡量的交易中再现水蒸气分布。对于干燥的冬季的浅层积云层顶部的一个例外是一个明显的潮湿模型偏置,伴随着潮湿的梯度,在云顶部的反转太弱。该模型在云和副船层中的水蒸气变异性低估在两个季节中发生,但比反转的潮湿模型偏压不太明显。尽管模型对水蒸气分布的分配到分辨率的分辨率的不敏感,但云分数强烈降低,模型分辨率越来越大,不收敛于升级仪网格间距。在模型分辨率上捕获了随着水蒸气路径的观察到的云加深,但是从云到低云分数的并行过渡更好地表示在升度器分辨率下。特别是,在潮湿的夏季季节,具有公里规模的分辨率的模拟高估了观察到的云分数附近的倒置,但缺少观察到的云底座附近的冷凝物。这说明了模型如何正确捕获水蒸气分布的能力并不一定转化为在水蒸气分布尾部的浅层云的充分表示中。

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