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A study on the transition mechanism of a stratus cloud into a warm sea fog using a single column model PAFOG coupled with WRF

机译:单列模型PAFOG结合WRF研究地层云向暖海雾的转变机理

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摘要

The transition mechanism of stratus cloud into warm sea fog over the Yellow Sea near the western coastal area of the Korean Peninsula is investigated using numerical simulation with a 1D turbulence model, PAFOG, coupled with a 3D regional model, WRF. The coupled model system was run in the two approaches, Eulerian and Lagrangian. For the selected warm sea fog case, the model results in the Eulerian approach showed that the bottom of the stratus cloud was lowered by cooling of the air just below the cloud base by turbulent heat loss. The Lagrangian approach showed the lowering of the stratus cloud top, owing to the evaporation of cloud droplets in this region by the entrainment of warm and dry air above the cloud top. The sensitivity test to SST indicated that the timing of water vapor saturation just below the cloud base depended on the magnitude of the turbulent heat flux from the sea surface. The subsidence rate was found to be important: when the subsidence rate was set to be half of the prescribed value, neither the lowering of the stratus cloud top nor the bottom occurred and the model could not produce a fog.
机译:利用一维湍流模型PAFOG和3D区域模型WRF进行了数值模拟,研究了层云向朝鲜半岛西部沿海地区附近黄海上的暖海雾过渡的机制。耦合模型系统以欧拉和拉格朗日两种方法运行。对于选定的温暖海雾情况,欧拉方法的模型结果表明,由于湍流热损失而冷却了云层下方的空气,降低了层云的底部。拉格朗日方法显示出层状云顶的降低,这是由于在该区域上方夹带了温暖和干燥的空气而使该区域中的云滴蒸发所致。对SST的敏感性测试表明,水汽饱和的时间正好位于云底以下,这取决于来自海面的湍流热通量。发现沉降率很重要:将沉降率设置为规定值的一半时,层云的顶部和底部都不会降低,并且模型不会产生雾。

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  • 来源
    《Asia-Pacific Journal of Atmospheric Sciences》 |2013年第2期|245-257|共13页
  • 作者

    Chang Ki Kim; Seong Soo Yum;

  • 作者单位

    Department of Atmospheric Sciences Yonsei University">(124);

    Geophysical Institute University of Alaska Fairbanks">(224);

    Department of Atmospheric Sciences Yonsei University">(124);

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  • 正文语种 eng
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