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A Study on Development of Airfoil Shape Toward Low Reynolds-Number Dependence of Aerodynamic Characteristics Under Low-Reynolds-Number-Flow Conditions

机译:低雷诺数流动条件下翼型对低空气动力学特性的雷诺数依赖性的研究

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This paper investigates the airfoil aerodynamics under low Reynolds number conditions (O(10~4)). An airfoil shape is developed for a cross-sectional shape of a main wing of fixed-wing airplane on Mars. A Reynolds-number dependence of aerodynamic characteristics is one of important issues in the airfoil design for the main wing of Mar airplane. According to expected cruise flight conditions, chord-based Reynolds numbers are set to 20,000, 30,000, and 40,000, respectively, and the angle of attack changes from 0 degrees and 9 degrees. In this study, we perform two-and three-dimensional numerical simulations and experimental force and flow measurements in order to understand the relationship between the aerodynamic coefficients and flow structures around the airfoil. Time-and span-averaged aerodynamic force results are in a fair agreement with the experimental results and captures qualitative trend. Results also suggest that the proposed airfoil is better aerodynamic performances in comparison with those of SD7003 airfoil and Ishii airfoil at the Reynolds number of 20,000. Effects of Reynolds number on the airfoil aerodynamics are investigated and discussed.
机译:本文研究了低雷诺数(O(10〜4))条件下的翼型空气动力学。机翼形状针对火星上固定翼飞机主翼的横截面形状而开发。空气动力特性的雷诺数依赖性是Mar飞机主翼机翼设计中的重要问题之一。根据预期的巡航飞行条件,基于和弦的雷诺数分别设置为20,000、30,000和40,000,迎角从0度和9度变化。在这项研究中,我们执行二维和三维数值模拟以及实验力和流量测量,以了解翼型周围的空气动力学系数与流量结构之间的关系。时间和跨度平均的空气动力结果与实验结果完全吻合,并捕获了定性趋势。结果还表明,与雷诺数为20,000的SD7003和Ishii翼型相比,该翼型具有更好的空气动力学性能。研究并讨论了雷诺数对翼型空气动力学的影响。

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