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Wall drag modification by large deformable droplets in turbulent channel flow

机译:湍流通道中大变形液滴对壁面阻力的修正

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摘要

The role of deformability in the wall-drag modification produced by the dispersion of large deformable droplets in turbulence is investigated by Direct Numerical Simulations (DNS) of a turbulent channel flow (Re-tau = 150) coupled with the Phase Field Model (PFM) description of the droplets. The two fluids have the same density and viscosity, and a wide range of interface deformability is considered by changing the Weber number: We = 0.18-2.8. The results show wall-drag modifications that depend on the droplets deformability: when the deformability is low (small We), a significant Drag Enhancement (DE) is observed; increasing the deformability the DE is reduced and negligible effects are observed when the Weber number is sufficiently large. The DE is likely due to droplets velocity that reduces increasing the deformability, introducing an obstruction to the flow and increasing drag. (C) 2014 Elsevier Ltd. All rights reserved.
机译:通过湍流通道流(Re-tau = 150)的直接数值模拟(DNS)与相场模型(PFM)结合研究了可变形性在湍流中分散大的可变形液滴而产生的壁阻力改性中的作用液滴的描述。两种流体具有相同的密度和粘度,并且通过更改韦伯数可考虑到很宽的界面变形能力:We = 0.18-2.8。结果表明,壁阻力的改变取决于液滴的变形能力:当变形能力低(We小)时,观察到明显的阻力增强(DE)。增加变形能力,当韦伯数足够大时,DE减小,并且观察到的影响可忽略不计。 DE可能是由于液滴速度降低了可变形性的增加,从而阻碍了流动并增加了阻力。 (C)2014 Elsevier Ltd.保留所有权利。

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