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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >On the impact of forced roll convection on vertical turbulent transport in cold air outbreaks
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On the impact of forced roll convection on vertical turbulent transport in cold air outbreaks

机译:在冷空气暴发中强迫对流对垂直湍流传输的影响

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摘要

We investigated the impact of roll convection on the convective boundary layer and vertical transports in different cold air outbreak (CAO) scenarios using large eddy simulations (LES). The organization of convection into rolls was triggered by upstream heterogeneities in the surface temperature, representing ice and water. By changing the sea ice distribution in our LES, we were able to simulate a roll and a nonroll case for each scenario. Furthermore, the roll wavelength was varied by changing the scale of the heterogeneity. The characteristics of the simulated rolls and cloud streets, such as aspect ratios, orientation of the roll axes, and downstream extensions of single rolls agreed closely with observations in CAO situations. The vertical turbulent fluxes, calculated for each simulation, were decomposed into contributions from rolls and from unorganized turbulence. Even though our results confirmed that rolls triggered by upstream heterogeneities can substantially contribute to vertical turbulent fluxes, the total fluxes were not affected by the rolls.
机译:我们使用大涡模拟(LES)研究了滚动对流对不同冷空气爆发(CAO)情况下对流边界层和垂直输送的影响。对流组织成卷是由表面温度的上游异质性(代表冰和水)触发的。通过更改LES中的海冰分布,我们能够针对每种情况模拟滚动和非滚动情况。此外,通过改变异质性的规模来改变滚动波长。模拟的轧辊和云道的特征,如纵横比,轧辊轴线的方向以及单个轧辊的下游延伸,与CAO情况下的观测结果非常吻合。为每次模拟计算的垂直湍流被分解为来自轧辊和无组织湍流的贡献。尽管我们的结果证实了上游异质性触发的轧辊可以极大地促进垂直湍流,但总的通量不受轧辊的影响。

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