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Effect of canard stall on projectile roll and pitch damping

机译:鸭嘴失速对弹丸侧倾和俯仰阻尼的影响

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摘要

A computational and mathematical approach is used to investigate the effect of canard stall on projectile roll and pitch damping. For spinning projectiles with dithering canards, large angles of attack can be achieved by these canards. These large angles of attack can lead to stall that causes abnormal loads on the projectile. Because of these abnormalities, it is important to include the effects of stall on the projectile. First, the total roll and pitch moments of two canards is derived. These equations are then analysed to show that the effects of canard stall can produce a decrease in roll damping, causing roll rate to increase, and an increase in pitch damping, causing the no roll frame pitch rate to decrease. To validate this analysis, simulation is performed using a fully non-linear six-degree-of-freedom dynamic model with canard aerodynamics. The results from the simulation agree with the equations derived; thus, for projectiles that use dithering canards for control, it is important to include these non-linear effects in the projectile dynamic model.
机译:计算和数学方法用于研究鸭嘴失速对弹丸侧倾和俯仰阻尼的影响。对于带有抖动鸭甲的旋转射弹,这些鸭甲可以实现较大的攻角。这些较大的攻角会导致失速,从而导致弹丸上的负载异常。由于这些异常,重要的是要包括失速对弹丸的影响。首先,推导两个鸭式飞机的总侧倾力矩和俯仰力矩。然后对这些方程式进行分析,以表明鸭嘴失速的影响会导致侧倾阻尼减小,从而导致侧倾率增加,而侧倾阻尼增大,从而导致无侧倾框架俯仰率降低。为了验证此分析,使用具有Canard空气动力学特性的完全非线性六自由度动力学模型进行了仿真。仿真结果与推导的方程式吻合。因此,对于使用抖动鸭掌进行控制的弹丸,将这些非线性效应包括在弹丸动力学模型中非常重要。

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