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Numerical Computations of Unsteady Aerodynamics of Maneuvering Projectiles

机译:机动弹丸非定常空气动力学的数值计算

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This paper describes a multidisciplinary computational study undertaken to model the flight trajectories and the free-flight aerodynamics of finned projectiles both with and without control maneuvers. Advanced computational capabilities in computational fluid dynamics (CFD), rigid body dynamics (RBD) and flight control system (FCS) have been successfully fully coupled on high performance computing (HPC) platforms for physics-based “Virtual Fly-Outs” of munitions. Time-accurate Navier-Stokes computations have been performed with the commercial CFD++ software to compute the unsteady aerodynamics associated with the free flight of finned projectiles using an advanced scalable unstructured flow solver on a highly parallel Linux Cluster. Progress made in the exploration of new techniques to efficiently generate a complete aerodynamic description consisting of both static and dynamic aerodynamic coefficients for projectile flight dynamic modeling is described. A new procedure that uses time-accurate sweeps allows rapid generation of static aerodynamic coefficients. Another method uses an unsteady, time accurate CFD simulation that is tightly coupled to a RBD projectile flight dynamic simulation and can generate both static and dynamic coefficients. A set of short time snippets of simulated projectile motion at different Mach numbers is computed using the integrated CFD/RBD/FCS software and employed as baseline data. The technique is being exercised on a finned and a canard-controlled projectile. The effect of canard angle deflection on the aerodynamics of the canard controlled projectile is currently being computed using the virtual fly out method and the CFD/RBD/FCS software.
机译:本文介绍了对模型飞行轨迹和翅片射弹的自由飞行空气动力学的多学科计算研究,无论是在没有控制演习的情况下。计算流体动力学(CFD)中的高级计算能力,刚性体动力学(RBD)和飞行控制系统(FCS)已成功地完全耦合,用于对弹药的基于物理学的“虚拟飞出”的高性能计算(HPC)平台。已经使用商业CFD ++软件执行了时间 - 准确的Navier-Stokes计算,以计算与高度平行的Linux群集上的高级可扩展的非结构化流量求解器使用高级可伸缩的非结构化流量求解器相关联的不稳定空气动力学。描述了在新技术探索的进展,以有效地产生完整的空气动力学描述,该描述由射弹飞行动态建模的静态和动态气动系数组成。使用时间准确扫描的新程序允许快速生成静态空气动力学系数。另一种方法使用不稳定的时间精确的CFD仿真,其紧密地耦合到RBD射弹飞行动态模拟,并且可以产生静态和动态系数。使用集成的CFD / RBD / FCS软件计算了不同马赫数的模拟射弹运动的一组短时间片段,并用作基线数据。该技术正在罚款和甲管控制的射弹上行使。目前正在使用虚拟飞出方法和CFD / RBD / FCS软件计算CANARD角偏转对CANARD控制射弹的空气动力学的影响。

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