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Prediction and Analysis of the Aerodynamic Characteristics of a Spinning Projectile Based on Computational Fluid Dynamics

机译:基于计算流体动力学的纺丝弹性空气动力学特性的预测与分析

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Numerical simulations of a spinning projectile with a diameter of 120 mm were conducted to predict the aerodynamic coefficients, and the CFD results were compared with the semiempirical method, PRODAS. Six coefficients or coefficient derivatives, including zero and the quadratic drag coefficient, lift force coefficient derivative, Magnus force coefficient derivative, overturning moment coefficient, and spinning damping moment coefficient, which are important parameters for solving the equations of motion of the spinning projectile, were investigated. Additionally, the nonlinear behavior of these coefficients and coefficient derivatives were analyzed through the predicted flow fields. The considered Mach number ranges from 0.14 to 1.2, and the nondimensional spinning rate (PD/2V) is set to 0.186. To calculate the coefficient derivative of the corresponding force or moment, additional simulations were conducted at the angle of attack of 2.5 degrees. The simulation results were able to predict nonlinear behavior, the especially abrupt change of the predicted coefficients and derivatives at the transonic Mach number, 0.95. The simulation results, including the skin friction, pressure, and velocity field, allow the characterization of the nonlinear behavior of the aerodynamic coefficients, thus, enabling better predictions of projectile trajectories.
机译:进行直径为120mm的旋转射弹的数值模拟以预测空气动力学系数,并将CFD结果与半透镜方法刺激进行比较。六个系数或系数衍生物,包括零和二次拖曳系数,提升力系数衍生物,倾斜力系数衍生物,倾斜的力矩系数和纺纱阻尼力矩系数,这是解决纺纱射弹运动方程的重要参数调查。另外,通过预测的流场分析了这些系数和系数衍生物的非线性行为。被审议的马赫数范围为0.14至1.2,非潜力纺纱速率(PD / 2V)设定为0.186。为了计算相应力或时刻的系数导数,以2.5度的攻击角进行额外的模拟。仿真结果能够预测非线性行为,在跨音马赫数处的预测系数和衍生物的特别突然变化,0.95。仿真结果,包括皮肤摩擦,压力和速度场,允许表征空气动力学系数的非线性行为,从而使得更好地预测射弹轨迹。

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