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雾顶辐射冷却驱动的湍流混合对华北平原雾的影响作用

Influence of Turbulent Diffusion Driven by Fog-Top Radiative Cooling on Heavy Fog in the North China Plain

  • 摘要: 雾顶辐射冷却是雾演变过程中的一个重要物理过程,它能驱动“自上而下”的湍流混合,因此YSU(Yonsei University)方案中引入了刻画该过程的模块(ysu_topdown_pblmix)。然而,这种“自上而下”的湍流混合对华北平原雾的影响作用尚不清楚。本文基于葵花-8卫星反演资料、地面自动站观测资料、大气边界层观测塔涡动相关观测,结合大涡模拟结果,分析ysu_topdown_pblmix在华北平原雾模拟中的影响作用。研究发现,虽然ysu_topdown_pblmix整体降低了华北平原雾的雾区模拟评分,但它却明显改进了近地层温度、湿度和雾边界层结构的模拟,这得益于雾顶辐射冷却驱动的“自上而下”的湍流混合。然而,目前ysu_topdown_pblmix中的夹卷作用偏强,导致雾顶之上的暖空气过多卷入雾体内部使得雾过快消散。敏感性试验显示,通过减小ysu_topdown_pblmix中的蒸发增强系数可以降低雾顶湍流夹卷强度,从而改善雾区模拟效果。本文研究工作表明,华北平原雾的数值模拟中有必要引入ysu_topdown_pblmix,但需要进一步改进其中的有关参数。

     

    Abstract: Radiative cooling at the top of a fog is a crucial physical process during fog evolution, driving a “top-down” turbulent mixing. The YSU (Yonsei University) scheme incorporates a module (ysu_topdown_pblmix) to represent this process. However, the influence of such “top-down” turbulent mixing on heavy fog events in the North China Plain remains unclear. Therefore, this study evaluates the suitability of ysu_topdown_pblmix in simulating fog events in the North China Plain using data from Himawari-8 satellite retrievals, automatic station observations, 15-layer atmospheric boundary layer gradient measurements, and 5-layer turbulence-related observations. Large-eddy simulations are also employed to supplement the analysis. The investigation reveals that, while ysu_topdown_pblmix overall decreases the fog area simulation scores in the North China Plain, it significantly improves the simulation of the near-surface temperature, humidity, and fog boundary layer structure. This enhancement is attributed to the “top-down” turbulent mixing driven by radiative cooling at the fog top. However, the current version of ysu_topdown_pblmix exhibits an excessive entrainment effect, resulting in the intrusion of excessive warm air above the fog top and causing the rapid dissipation of fog. Sensitivity tests demonstrate that reducing the evaporative enhancement coefficient in ysu_topdown_pblmix can mitigate the strength of turbulent entrainment at the fog top, thereby improving the simulation of fog events. These findings suggest that incorporating ysu_topdown_pblmix is essential for accurately simulating heavy fog in the North China Plain, however, further refinement of relevant parameters is required.

     

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