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Theoretical study on two-dimensional aerodynamic characteristics of unsteady wings

机译:非定常机翼二维空气动力特性的理论研究

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A simple computing method based con a potential theory is developed for two-dimensional steady and unsteady deflected wings. This method of theoretical analysis is essentially related to thin and angular airfoils. Thus, the method is very simple but is effective to, forecast aerodynamic forces for deflected or angular airfoils with a small camber operating in high Reynolds number flow, specifically in unsteady motion. The suction force acting on the leading edge of steady airfoils is theoretically obtained by using the Blasius formula. By Polhamus's leading edge suction analogy, the suction force is considered to be directed upward in partially separated flow for real thin airfoil with sharp leading edge. The theory can also be applied to obtain the aerodynamic characteristics of thin airfoils operating on low Reynolds number flow under some degree of approximation. This is very useful for the unsteady aerodynamic analysis because the Navier-Stokes equation can be solved by neither analytical nor numerical method for the thin and angular airfoils, which are common in the insect wing. (C) 2004 Elsevier Ltd. All rights reserved.
机译:针对二维稳态和非稳态偏转机翼,开发了一种基于潜在理论的简单计算方法。这种理论分析方法基本上与薄而有角度的机翼有关。因此,该方法非常简单,但是对于以高雷诺数流量,特别是在非平稳运动中工作的小外倾角来预测偏斜或成角度的翼型的空气动力是有效的。理论上,通过使用Blasius公式可以获得作用在稳定翼型前缘上的吸引力。通过Polhamus的前缘吸力类推,对于具有锋利的前缘的真正的薄翼型,吸力被认为在部分分离的气流中指向上。该理论还可用于获得在一定程度的近似度下在低雷诺数流量下工作的薄型翼型的空气动力学特性。这对于非定常的空气动力学分析非常有用,因为对于昆虫翼中常见的薄翼型和角型翼型,既无法通过解析方法也无法通过数值方法来求解,但Navier-Stokes方程无法求解。 (C)2004 Elsevier Ltd.保留所有权利。

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