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An Approach to Predict Flight Dynamics and Stability Derivatives of Distressed Aircraft

机译:一种方法来预测困境飞机的飞行动力学和稳定性衍生物

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This paper presents an approach to predict the flight dynamics and stability derivatives of a structurally damaged transport category subsonic aircraft based on a spanwise full loss damage model. Stability derivatives are derived using basic principles and theoretical aerodynamics, resulting equations are tabulated for a distressed aircraft due to wing damage. We determined two new stability derivatives based on our theoretical derivations using a wing damaged aircraft model. Our new approach and the stability derivatives derived should prove useful in the evaluation of damaged aircraft systems as well as in development of flight simulations. A case study conducted includes prediction of changes in stability derivatives and coefficients with damage parameter using a digital C-17 Globemaster aircraft model. The newly derived damaged aircraft stability derivatives are validated using C-5 Galaxy aircraft flight test data available. Results show excellent correlation.
机译:本文介绍了一种方法来预测基于翼展全部损失损伤模型的结构损坏传输类亚音速飞机的飞行动力学和稳定性衍生物。使用基本原理和理论空气动力学来得出稳定性衍生物,由于机翼损坏,产生的方程被制成困难的飞机。我们使用机翼损坏的飞机模型基于我们的理论衍生来确定两个新的稳定性衍生品。我们的新方法和稳定的衍生物得出的衍生物应该在评估损坏的飞机系统以及飞行模拟的发展中证明是有用的。进行的案例研究包括使用数字C-17 GlobeMaster飞机模型预测具有损坏参数的稳定衍生物和系数的变化。使用C-5 Galaxy飞机飞行测试数据验证了新导出的损坏的飞机稳定性衍生物。结果表明出色的相关性。

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