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Non-modal stability analysis of low-Re separated flow around a NACA 4415 airfoil in ground effect

机译:Naca 4415翼型围绕地面效果的低再分离流动的非模态稳定性分析

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In this numerical-theoretical study, we perform a linear non-modal stability analysis of the separated flow around a NACA 4415 airfoil over a no-slip ground at low Reynolds numbers (300 = Re = 500) and high angles of attack (12 degrees = alpha = 20 degrees). We find that: (i) the strength of the recirculation zone behind the airfoil is a key parameter controlling the absolute/convective nature of the instability in the boundary layer downstream; (ii) when Re, alpha or the ground clearance increases, the energy gain also increases, with the optimal perturbations switching from being three dimensional to two dimensional; and (iii) classical hairpin vortices, or Klebanoff modes, can be produced by three-dimensional optimal perturbations on a two-dimensional steady base flow containing a laminar separation bubble. Knowledge of the spatiotemporal features of the optimal mode could aid the design of advanced strategies for flow control. This study offers new insight into the transient growth behavior of airfoil-ground flow systems at low Re and high alpha, contributing to a better understanding of the ground-effect aerodynamics of small insects and micro aerial vehicles. (C) 2019 Elsevier Masson SAS. All rights reserved.
机译:在该数值理论研究中,我们在低雷诺数(300 <= RE <= 500)和高角度(300)和高角度(300))上,在NACA 4415翼型上的分离流动的线性非模态稳定性分析。 12度<= alpha <= 20度)。我们发现:(i)翼型后面的再循环区的强度是控制下游边界层中不稳定性的绝对/对流性的关键参数; (ii)当Re,Alpha或地间隙增加时,能量增益也增加,最佳扰动从三维转换为二维; (iii)经典发夹涡流或克莱班式模式,可以通过三维最佳扰动在包含层间分离气泡的二维稳定碱流量上产生。了解最佳模式的时空特征可以帮助设计流量控制的先进策略。本研究提供了新的洞察翼型和高α的翼型地流动系统的瞬态生长行为,有助于更好地了解小型昆虫和微空气车辆的地面效果空气动力学。 (c)2019年Elsevier Masson SAS。版权所有。

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