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The NATO STO Task Group AVT-201 on 'Extended Assessment of Stability and Control Prediction Methods for NATO Air Vehicles'

机译:北约STO任务组AVT-201“北约航空器稳定性和控制预测方法的扩展评估”

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The ability to accurately predict both static and dynamic stability characteristics of air vehicles using computational fluid dynamics (CFD) methods could revolutionize the air vehicle design process, especially for military air vehicles. A validated CFD capability would significantly reduce the number of ground tests required to verify vehicle concepts and, in general, could eliminate costly vehicle 'repair' campaigns required to fix performance anomalies that were not adequately predicted prior to full-scale vehicle development. This paper outlines the extended integrated experimental and numerical approach to assess the of stability and control prediction method capabilities as well as the design and estimation the control device effectiveness for highly swept low observable UCAV configurations. The aim of the AVT-201 Task Group is to provide an assessment of the CFD capabilities using model scale experiments and transferring this knowledge to real scale applications.
机译:使用计算流体力学(CFD)方法准确预测飞行器的静态和动态稳定性的能力可能会改变飞行器的设计过程,尤其是对于军用飞行器。经过验证的CFD功能将大大减少验证车辆概念所需的地面测试的数量,并且通常可以消除修复大规模车辆开发之前未充分预测到的性能异常所需的昂贵的车辆“维修”活动。本文概述了扩展的集成实验和数值方法,用于评估稳定性和控制预测方法的功能,以及针对高扫频低可观测UCAV配置的设计和估计控制设备的有效性。 AVT-201任务组的目的是使用模型规模实验来评估CFD功能,并将这些知识转移到实际规模的应用程序中。

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