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

机译:稳定性和控制CFD调查通用53°扫描UCAV配置

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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“北约航空器可靠稳定性与控制预测方法的扩展评估”正在研究各种计算方法,以预测经历非线性飞行条件的飞机的稳定性和控制参数。本文通过与空气隧道数据相关的相关性,用于在集团的焦点配置上的空气动力学预测能力的状态下的风隧道数据,53°扫描和扭曲的Lambda Wing UCAV,经历了各种卷,俯仰和偏航动议。车辆空气动力学由圆形前沿涡流流动分离的复杂非线性物理主导。用于静态纵向/横向扫描的与实验数据的相关性,以及用于在用和没有控制表面的车辆操作的车辆的规定辊/俯仰/横摆窦运动的不同频率。数据和派生的理解应该对AVT-201团队和其他研究人员有用,他们正在开发用于从飞行器的飞机的低速CFD预测从飞行信封的非线性区域的低速CFD预测进行增强飞行模拟模型的技术。

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