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首页> 外文期刊>Journal of Aircraft >Airfoil Wave-Drag Prediction Using Euler Solutions of Transonic Flows
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Airfoil Wave-Drag Prediction Using Euler Solutions of Transonic Flows

机译:跨音速流欧拉解的翼型波阻力预测

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The objective of the present work is the evaluation of four airfoil wave-drag prediction methods based on solutions of the Euler equations. In the case of two-dimensional inviscid flows of interest here, it is shown that the expression based on a volume integration of a positive definite quantity related to the artificial viscosity systematically underestimates the wave drag. In contrast with the popular belief, it is demonstrated that no clear improvement, in terms of accuracy, results from the use of far-field methods with respect to body-surface pressure integration. However, drag predictions obtained with entropy-based expression ap-plied on a surface containing only the shocks are less sensitive to high levels of false entropy production because the drag contribution associated with false entropy production is eliminated. Furthermore, in three-dimensional flows, the wave and induced drag can be distinguished. A new method is proposed to correct the body-surface pressure integration estimates that is less sensitive to the level of false entropy production.
机译:本工作的目的是基于欧拉方程的解来评估四种翼型波阻力预测方法。在这里关注的二维无粘性流的情况下,表明基于与人工粘度相关的正确定量的体积积分的表达式系统地低估了波阻力。与普遍的看法相反,事实证明,就体表压力积分而言,远场方法的使用在准确性方面没有明显的改善。但是,在仅包含冲击的表面上应用基于熵的表达式获得的阻力预测对高水平的错误熵产生不太敏感,因为消除了与错误熵产生相关的阻力贡献。此外,在三维流中,可以区分波浪和感应阻力。提出了一种新方法来校正对虚假熵产生水平不敏感的体表压力积分估计。

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