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首页> 外文期刊>International Journal of Heat and Fluid Flow >Riblet drag reduction in mild adverse pressure gradients: A numerical investigation
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Riblet drag reduction in mild adverse pressure gradients: A numerical investigation

机译:轻度不利压力梯度下的Riblet阻力减小:数值研究

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摘要

Riblet films are a passive method of turbulent boundary layer control that can reduce viscous drag. They have been studied with great detail for over 30 years. Although common riblet applications include flows with Adverse Pressure Gradients (APG), nearly all research thus far has been performed in channel flows. Recent research has provided motivation to study riblets in more complicated turbulent flows with claims that riblet drag reduction can double in mild APG common to airfoils at moderate angles of attack. Therefore, in this study, we compare drag reduction by scalloped riblet films between riblets in a zero pressure gradient and those in a mild APG using high-resolution large eddy simulations. In order to gain a fundamental understanding of the relationship between drag reduction and pressure gradient, we simulated several different riblet sizes that encompassed a broad range of s(+) (riblet width in wall units), similarly to many previously published experimental studies. We found that there was only a slight improvement in drag reduction for riblets in the mild APG. We also observed that peak values of streamwise turbulence intensity, turbulent kinetic energy, and streamwise vorticity scale with riblet width. Primary Reynolds shear stresses and turbulence kinetic energy production however scale with the ability of the riblet to reduce skin-friction. (C) 2015 Elsevier Inc. All rights reserved.
机译:Riblet膜是一种被动的边界层控制方法,可以减少粘性阻力。对它们的详细研究已超过30年。尽管常见的肋骨应用包括带有逆向压力梯度(APG)的流动,但到目前为止,几乎所有的研究都是在通道流动中进行的。最近的研究为研究更复杂的湍流中的肋骨提供了动力,声称在中等攻角下,轻度APG中的肋骨阻力减小可以使翼型中的APG翻倍。因此,在这项研究中,我们使用高分辨率大涡流模拟比较零压力梯度下的肋骨与温和APG中的肋骨之间的扇贝状肋骨膜减阻。为了对减阻和压力梯度之间的关系有一个基本的了解,我们模拟了几种不同的肋条尺寸,这些肋条尺寸涵盖了广泛的s(+)(肋骨宽度(以墙体为单位)),类似于许多以前发表的实验研究。我们发现,在温和的APG中,肋骨阻力的减少仅略有改善。我们还观察到流向湍流强度,湍流动能和流向涡度的峰值随肋的宽度而变化。雷诺初级剪切应力和湍流动能的产生随肋骨减少皮肤摩擦的能力而成比例。 (C)2015 Elsevier Inc.保留所有权利。

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