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The research analysis of aerodynamic numerical simulation of grid fin

机译:栅翅片气动数值模拟的研究分析

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This paper presents the results of an investigation to use arc-length mesh generation and finite volume TVD scheme to calculate Euler equations for predicting the effect of geometry parameters in reducing the drag force and improving the lift-drag ratio of grid fin in the supersonic flow regime. The effects of frame and web, whose cross section shape and thickness and spacing, on the aerodynamic character of the grid fin were studied. Calculations were made at Mach 2.5 and several angles of attack. The results were validated by comparing the computed aerodynamic coefficients against wind tunnel experimental data. Good agreement was found between computed and experimental results. The computed results suggest that parameters of the grid fin's frame have the greatest effect on the grid fin aerodynamic character, especially on its drag force. It was concluded proper choice of appropriate grid fin geometry parameters could reduce the drag force and improve the lift-drag ratios.
机译:本文介绍了使用弧长网格生成和有限体积TVD方案来计算Euler方程的研究结果,以预测几何参数对降低超声速流中翼片的阻力和改善鳍片的升阻比的影响。政权。研究了框架和腹板的横截面形状,厚度和间距对格栅鳍片气动特性的影响。计算是在2.5马赫和几个攻角下进行的。通过将计算出的空气动力学系数与风洞实验数据进行比较来验证结果。在计算结果和实验结果之间找到了很好的一致性。计算结果表明,翅片框架的参数对翅片的空气动力特性,特别是对其阻力的影响最大。得出的结论是,适当选择合适的格栅鳍几何参数可以减小拖曳力并提高升阻比。

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