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Modelling roughness effects for transitional low Reynolds number aerofoil flows

机译:过渡低雷诺数翼型流动的粗糙度影响建模

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Roughness modelling at low Reynolds numbers of O(10~4-10~5) is of practical importance for micro air vehicles. This paper investigates the roughness modelling behaviour of the low Reynolds number shear stress transport model and the γ-Re_θ shear stress transport model. Both include modelling flow transition and surface roughness effects. The roughness effects are modelled as sand grain roughness. A series of simulations using the two models have been performed on a NACA0012 aerofoil with comparisons to available experimental data. The results show that both of the models have the capability to reasonably predict the leading edge laminar separation bubble, transition and skin friction and, therefore, lift and drag on smooth surfaces. However, the two models behave very differently for the rough surface aerofoil. While the low Reynolds number shear stress transport model performs well, the γ-Re_θ model fails to predict the transition on the rough aerofoil surface, resulting in inaccurate lift and drag prediction.
机译:在雷诺数为O(10〜4-10〜5)的情况下进行粗糙度建模对微型飞行器具有实际意义。本文研究了低雷诺数剪切应力传递模型和γ-Re_θ剪切应力传递模型的粗糙度建模行为。两者都包括对流动过渡和表面粗糙度影响进行建模。将粗糙度影响建模为沙粒粗糙度。使用两个模型对NACA0012机翼进行了一系列模拟,并与可用的实验数据进行了比较。结果表明,这两个模型均具有合理预测前缘层流分离气泡,过渡和皮肤摩擦的能力,因此可以在光滑表面上提起并拖动。但是,这两种模型在粗糙的机翼表面上的行为差异很大。尽管低雷诺数切应力传递模型表现良好,但γ-Re_θ模型无法预测粗糙翼型表面上的过渡,从而导致升力和阻力预测不准确。

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