首页> 外文期刊>Acta Meteorologica Sinica >NUMERICAL PREDICTION EXPERIMENT OF AN ADVECTION FOG IN NANLING MOUNTAIN AREA
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NUMERICAL PREDICTION EXPERIMENT OF AN ADVECTION FOG IN NANLING MOUNTAIN AREA

机译:南岭山地增产雾的数值预报实验

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Now more comprehensive cloud microphysical processes have been included in advanced three-dimensional mesoscale meteorological model such as PSU/NCAR MM5 model, so the model can be used in the prediction of fog. In this paper, MM5 was utilized to simulate an advection fog occurring in Nanling Mountain area. The simulated results were compared with the facts obtained by detailed observation experiment. The results showed that the simulation was successful in the following aspects: (1) the formation and development of the fog; (2) the temporal variation of the maximum liquid water content; (3) the diffusion of the cold air, especially the temporal variation of the ground temperature; and (4) the uplift of the air and the formation and development of the low-lever inversion. Besides, we did some sensitivity numerical experiments and discussed the effects of the radiation, the release of condensation latent heat and the change of soil moisture and temperature on the formation and development of fog. The success of numerical simulation experiment of fog has proved that the numerical forecasting of fog is promising.
机译:现在,更先进的三维中尺度气象模型(例如PSU / NCAR MM5模型)已经包含了更全面的云微物理过程,因此该模型可用于雾的预测。本文利用MM5模拟了南岭山区发生的对流雾。将模拟结果与通过详细观察实验获得的事实进行比较。结果表明,该模拟在以下几个方面是成功的:(1)雾的形成和发展; (2)最大液态水含量的时间变化; (3)冷空气的扩散,特别是地温的时间变化; (4)空气上升和低杠杆反转的形成与发展。此外,我们进行了一些敏感性数值实验,并讨论了辐射,凝结潜热的释放以及土壤水分和温度的变化对雾的形成和发展的影响。雾的数值模拟实验的成功证明了雾的数值预测是有前途的。

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