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Aerodynamic characteristics of a spinning projectile with elastic deformation

机译:具有弹性变形的旋转弹丸的气动特性

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The elastic deformation of a spinning projectile with a large slenderness ratio influences its flight stability and maneuverability. Unsteady time-accurate simulation based on a dual-time stepping method and the dynamic mesh method were used to solve the unsteady Reynolds-averaged Navier-Stokes (URANS) equations and obtain the aerodynamic characteristics of a spinning projectile given continuously elastic deformation. Archival wind tunnel experimental data were used, and grid resolution and time independence studies were carried out for numerical validation at angles of attack ranging from 2.09 degrees to 10.4 degrees. The aerodynamic coefficients induced by spin and elastic deformation were compared to the effect of movement frequency, deformation component, Mach number and angle of attack using Fourier transform. Numerical simulations indicate that the time-averaged values and the fluctuation amplitudes of the aerodynamic coefficients increase with movement frequency; two aerodynamic components are induced by elastic deformation, one opposite and one perpendicular to the direction of deformation; nose and body deformation have different effects on the aerodynamic characteristics; and the effective angle of attack induced by elastic deformation and rolling movement decreases as the Mach number increases, thus weakening the influence of movement on the aerodynamic forces. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:细长比大的旋转弹丸的弹性变形会影响其飞行稳定性和可操纵性。利用基于双重时间步长法和动态网格法的非稳态时间精确仿真,求解了非稳态雷诺平均Navier-Stokes(URANS)方程,并获得了具有连续弹性变形的旋转弹丸的气动特性。使用档案风洞实验数据,并进行了网格分辨率和时间独立性研究,以在2.09度至10.4度的迎角范围内进行数值验证。利用傅立叶变换将自旋和弹性变形引起的空气动力学系数与运动频率,变形分量,马赫数和攻角的影响进行了比较。数值模拟表明,空气动力学系数的时间平均值和波动幅度随运动频率的增加而增大。弹性变形产生两个空气动力成分,一个相对于另一个,垂直于变形方向。鼻子和身体变形对空气动力特性的影响不同;随着马赫数的增加,弹性变形和滚动运动引起的有效迎角减小,从而减弱了运动对空气动力的影响。 (C)2016 Elsevier Masson SAS。版权所有。

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