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Influence of Evaporating Droplets in the Turbulent Marine Atmospheric Boundary Layer

机译:湍流船舶大气边界层蒸发液滴的影响

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Sea-spray droplets ejected into the marine atmospheric boundary layer take part in a series of complex transport processes. By capturing the air-droplet coupling and feedback, we focus on how droplets modify the total heat transfer across a turbulent boundary layer. We implement a high-resolution Eulerian-Lagrangian algorithm with varied droplet size and mass loading in a turbulent open-channel flow, revealing that the influence from evaporating droplets varies for different dynamic and thermodynamic characteristics of droplets. Droplets that both respond rapidly to the ambient environment and have long suspension times are able to modify the latent and sensible heat fluxes individually, however the competing signs of this modification lead to an overall weak effect on the total heat flux. On the other hand, droplets with a slower thermodynamic response to the environment are less subjected to this compensating effect. This indicates a potential to enhance the total heat flux, but the enhancement is highly dependent on the concentration and suspension time.
机译:喷射进入海洋大气边界层的海喷雾液滴参加一系列复杂的运输过程。通过捕获空气液滴耦合和反馈,我们专注于液滴如何修改湍流边界层的总热传递。我们在湍流开放通道流中实现了一种具有变化液滴尺寸和质量加载的高分辨率欧拉维拉格算法,揭示了蒸发液滴的影响因液滴的不同动态和热力学特性而变化。液滴,两者都迅速响应到环境环境,并且长期暂停时间能够单独修改潜伏和明智的热量通量,但这种改进的竞争标志导致总热量通量的总体弱效应。另一方面,对环境的热力学响应较慢的液滴不太受到这种补偿效果。这表明增强总热通量的可能性,但增强高度依赖于浓度和悬浮时间。

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