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Investigations on the influence of control devices to the separation characteristics of a missile from the internal weapons bay

机译:控制装置对内部武器湾导弹分离特性的研究

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摘要

To ensure the safe separation process of a missile from internal weapons bay, the control device is mounted in front of the internal weapons bay to control the separation process. Based on the coupling of Navier-Stokes (N-S) equations and six-degrees-of-freedom (6DOF) rigid-body motion equations, the separation process of missile under four different conditions (free separation, and rectangle, prism and wedge control) was numerically simulated. The separation process and flow fields were obtained, the aerodynamic parameters and trajectory parameters of four cases compared. Our results show that, the control device can improve the aerodynamic characteristics of the flow field, enhancing the safety of the missile separation. The wedge control device has the best control effect and makes the missile stable, the rectangular and prism control devices have strong bow shock wave and make the pitch angle of the missile large.
机译:为确保从内部武器湾的导弹的安全分离过程,控制装置安装在内部武器湾前面以控制分离过程。 基于Navier-Stokes(NS)方程的耦合和六度自由度(6dof)刚体运动方程,在四种不同条件下导弹的分离过程(自由分离,矩形,棱镜和楔形控制) 数量模拟。 获得了分离过程和流场,比较了四种情况的空气动力学参数和轨迹参数。 我们的结果表明,控制装置可以提高流场的空气动力学特性,增强导弹分离的安全性。 楔形控制装置具有最佳的控制效果,使导弹稳定,矩形和棱镜控制装置具有强大的弓形冲击波并使导弹的桨距。

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