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Large-Eddy Simulations of EUCLIPSE-GASS Lagrangian Stratocumulus-to-Cumulus Transitions: Mean State, Turbulence, and Decoupling

机译:EUCLIPSE-GASS拉格朗日平流层-积云过渡的大涡模拟:平均状态,湍流和解耦

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摘要

Results of four Lagrangian stratocumulus-to-shallow-cumulus transition cases as obtained from six different large-eddy simulation models are presented. The model output is remarkably consistent in terms of the representation of the evolution of the mean state, which is characterized by a stratocumulus cloud layer that rises with time and that warms and dries relative to the subcloud layer. Also, the effect of the diurnal insolation on cloud-top entrainment and the moisture flux at the top of the subcloud layer are consistently captured by the models. For some cases, the models diverge in terms of the liquid water path (LWP) during nighttime, which can be explained from the difference in the sign of the buoyancy flux at cloud base. If the subcloud buoyancy fluxes are positive, turbulence sustains a vertically well-mixed layer, causing a cloud layer that is relatively cold and moist and consequently has a high LWP. After some simulation time, all cases exhibit subcloud-layer dynamics that appear to be similar to those of the dry convective boundary layer. The humidity flux from the subcloud layer toward the stratocumulus cloud layer, which is one of the major sources of stratocumulus cloud liquid water, is larger during the night than during the day. The sensible heat flux becomes constant in time, whereas the latent heat flux tends to increase during the transition. These findings are explained from a budget analysis of the subcloud layer.
机译:给出了从六个不同的大涡模拟模型获得的四个拉格朗日平流层-浅层积过渡情况的结果。就平均状态的演化表示而言,模型输出是非常一致的,其特征在于层状积云层随时间上升,并且相对于亚云层变暖和干燥。而且,日照对云顶夹带和亚云层顶部的水分通量的影响被模型一致地捕获。在某些情况下,这些模型在夜间的液态水路径(LWP)上有所不同,这可以用云底浮力通量的符号差异来解释。如果亚云的浮力通量为正,则湍流会维持垂直均匀混合的层,从而导致云层相对较冷潮湿,因此具有较高的LWP。经过一段时间的模拟后,所有情况都表现出亚云层动态,这似乎与干对流边界层的动态相似。从地下云层到平流层云层(平流层云层液态水的主要来源之一)的湿度通量在夜间要比白天大。感热通量在时间上变得恒定,而潜热通量在过渡期间趋于增加。这些发现是通过对子云层的预算分析进行解释的。

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