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Stability and Control CFD Investigations of a Generic 53° Swept UCAV Configuration

机译:通用53°后掠UCAV配置的稳定性和控制CFD研究

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NATO STO Task Group AVT-201 on "Extended Assessment of Reliable Stability & Control Prediction Methods for NATO Air Vehicles" is studying various computational approaches to predict stability and control parameters for aircraft undergoing non-linear flight conditions. This paper contributes an assessment through correlations with wind tunnel data for the state of aerodynamic predictive capability of time-accurate RANS methodology on the group's focus configuration, a 53° swept and twisted lambda wing UCAV, undergoing a variety of roll, pitch, and yaw motions. The vehicle aerodynamics is dominated by the complex non-linear physics of round leading-edge vortex flow separation. Correlations with experimental data are made for static longitudinal/lateral sweeps, and at varying frequencies of prescribed roll/pitch/yaw sinusoidal motion for the vehicle operating with and without control surfaces. The data and the derived understanding should prove useful to the AVT-201 team and other researchers who are developing techniques for augmenting flight simulation models from low-speed CFD predictions of aircraft traversing non-linear regions of a flight envelope.
机译:北约STO任务组AVT-201“对北约飞行器的可靠稳定性和控制预测方法进行扩展评估”正在研究各种计算方法,以预测处于非线性飞行条件下的飞机的稳定性和控制参数。本文通过与风洞数据的相关性,对在组的焦点配置,53°掠过和扭曲的λ翼UCAV,经历各种侧倾,俯仰和偏航的时间精确的RANS方法的空气动力学预测能力的状态进行了评估。动作。车辆的空气动力学受圆形前沿涡流分离的复杂非线性物理学支配。对于静态纵向/横向扫描,以及在规定的侧倾/俯仰/偏航正弦运动的变化频率下,对于带有和不带有控制面的车辆,都将其与实验数据进行关联。数据和得出的理解应该证明对AVT-201团队和其他研究人员有用,这些研究人员正在开发技术,以通过穿越飞行包络线非线性区域的飞机的低速CFD预测来增强飞行仿真模型。

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