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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Comparing the effect of three transition models on the CFD predictions of a NACA0012 airfoil aerodynamics
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Comparing the effect of three transition models on the CFD predictions of a NACA0012 airfoil aerodynamics

机译:比较三种过渡模型对NACA0012翼型空气动力学的CFD预测的影响

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摘要

The ability to accurately predict transition is important for flows around airfoils, especially at low Reynolds numbers. Transition from laminar to turbulent flow strongly influences the flow separation and the skin friction, thus affecting the airfoil aerodynamic characteristics. In the present work, three models for predicting flow transition were implemented in a 2D curvilinear, aerodynamic Navier-Stokes CFD code. These are Michel's empirical model, the e(N) model, and a newly proposed transition model (K-V model). The last two models are based on linear stability analysis employing the Orr-Sommerfeld equation to determine the amplification of spatial flow perturbations. The effect of the transition models on the airfoil aerodynamic characteristics at different Reynolds number and incidence angle are studied numerically. Both these parameters, when increased, promote the growth of flow perturbations. The test case is a 2D incompressible, low turbulence air flow around a smooth NACA0012 airfoil. The results of the new K-V transition model are in better agreement with existing experimental data. (C) 2016 Elsevier Ltd. All rights reserved.
机译:准确预测过渡的能力对于机翼周围的流动非常重要,尤其是在雷诺数较低的情况下。从层流到湍流的过渡强烈影响流分离和蒙皮摩擦,从而影响翼型的空气动力特性。在目前的工作中,在二维曲线,气动Navier-Stokes CFD代码中实现了三个用于预测流动过渡的模型。这些是Michel的经验模型,e(N)模型和新提出的过渡模型(K-V模型)。最后两个模型基于线性稳定性分析,使用Orr-Sommerfeld方程确定空间流量扰动的放大率。数值研究了过渡模型对不同雷诺数和入射角的翼型气动特性的影响。当增加这两个参数时,都会促进流量扰动的增长。测试用例是围绕光滑的NACA0012机翼的2D不可压缩的低湍流气流。新的K-V转换模型的结果与现有实验数据更好地吻合。 (C)2016 Elsevier Ltd.保留所有权利。

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