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The impact of vertical resolution in the explicit numerical forecasting of radiation fog: A case study

机译:垂直分辨率对辐射雾显式数值预报的影响:案例研究

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摘要

Numerical experiments are performed with a comprehensive one-dimensional boundary layer/fog model to assess the impact of vertical resolution on explicit model forecasts of an observed fog layer. Two simulations were performed, one using a very high resolution and another with a vertical grid typical of current high-resolution mesoscale models. Both simulations were initialized with the same profiles, derived from observations from a fog field experiment. Significant differences in the onset and evolution of fog were found. The results obtained with the high-resolution simulation are in overall better agreement with available observations. The cooling rate before the appearance of fog is better represented, while the evolution of the liquid water content within the fog layer is more realistic. Fog formation is delayed in the low resolution simulation, and the water content in the fog layer shows large-amplitude oscillations. These results show that the numerical representation of key thermo-dynamical processes occurring in fog layers is significantly altered by the use of a grid with reduced vertical resolution.
机译:使用全面的一维边界层/雾模型进行数值实验,以评估垂直分辨率对观察到的雾层的显式模型预测的影响。进行了两次仿真,一次使用非常高分辨率,另一次使用典型的当前高分辨率中尺度模型的垂直网格。两种模拟都使用相同的配置文件初始化,这些配置文件来自雾场实验的观察结果。发现雾的发生和发展存在显着差异。高分辨率模拟获得的结果总体上与可用的观测结果更好地吻合。雾出现之前的冷却速度可以更好地表示,而雾层中液态水含量的变化则更现实。在低分辨率模拟中,雾的形成被延迟,并且雾层中的水分显示出大幅度的振荡。这些结果表明,通过使用垂直分辨率降低的网格,雾层中发生的关键热力学过程的数值表示会发生显着变化。

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