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Modelling the effects of gravity waves on stratocumulus clouds observed during VOCALS-UK

机译:在人声 - 英国观察到重力波对划线云的影响

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During the VOCALS campaign spaceborne satellite observations showed that travelling gravity wave packets, generated by geostrophic adjustment, resulted in perturbations to marine boundary layer (MBL) clouds over the south-east Pacific Ocean (SEP). Often, these perturbations were reversible in that passage of the wave resulted in the clouds becoming brighter (in the wave crest), then darker (in the wave trough) and subsequently recovering their properties after the passage of the wave. However, occasionally the wave packets triggered irreversible changes to the clouds, which transformed from closed mesoscale cellular convection to open form. In this paper we use large eddy simulation (LES) to examine the physical mechanisms that cause this transition. Specifically, we examine whether the clearing of the cloud is due to (i) the wave causing additional cloud-top entrainment of warm, dry air or (ii) whether the additional condensation of liquid water onto the existing drops and the subsequent formation of drizzle are the important mechanisms. We find that, although the wave does cause additional drizzle formation, this is not the reason for the persistent clearing of the cloud; rather it is the additional entrainment of warm, dry air into the cloud followed by a reduction in longwave cooling, although this only has a significant effect when the cloud is starting to decouple from the boundary layer. The result in this case is a change from a stratocumulus to a more patchy cloud regime. For the simulations presented here, cloud condensation nuclei (CCN) scavenging did not play an important role in the clearing of the cloud. The results have implications for understanding transitions between the different cellular regimes in marine boundary layer (MBL) clouds.
机译:在声乐竞选期间,星空出现的卫星观测结果表明,由地球脑调整产生的重力波包导致海洋边界层(MBL)云在东南太平洋(SEP)上的扰动。通常,这些扰动在波浪中导致​​云变得更亮(在波峰)中,这些扰动是可逆的,然后更暗(在波浪槽中)并随后在波的通过后恢复它们的性质。然而,偶尔波浪包触发了对云的不可逆变化,从闭合的Mesoscale蜂窝对流转换为打开形式。在本文中,我们使用大型涡流模拟(LES)来检查导致这种过渡的物理机制。具体而言,我们检查云的清除是否是由于(i)导致额外的云顶夹带的波,干燥空气或(ii)液体水的额外凝结到现有的滴剂和随后形成毛毛雨是重要的机制。我们发现,虽然波确实导致额外的毛毛雨形成,但这不是云持续清除的原因;相反,它是将温暖,干燥空气的额外夹带,然后延伸,龙波冷却减少,尽管当云开始与边界层脱离时,这仅具有显着的效果。这种情况下的结果是从StratoCumulus到更差码的云制度的变化。对于这里呈现的模拟,云凝结核(CCN)清除在清除云中没有发挥重要作用。结果对理解海洋边界层(MBL)云中不同蜂窝制度之间的过渡的影响。

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