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Extended Assessment of Stability and Control Prediction Methods for NATO Air Vehicles: Summary

机译:稳定性和控制预测的扩展评估 ud北约飞行器的方法:总结

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摘要

This paper presents cross comparisons and assessments of the aerodynamic results obtained within the NorthudAtlantic Treaty Organization’s Science and Technology Organisation Applied Vehicle Technology-201 Task Group.udThe results of five participating organizations and six different computational fluid dynamics solvers are compared toudthe available wind-tunnel data from the German–Dutch Wind Tunnels, and the results were obtained at low subsonicudspeeds for both static and dynamic cases. The comparisons help to find commonalities and disparities in theudcomputational fluid dynamics predictions of the aerodynamics of a generic unmanned combat aerial vehicle (theudstability and control configuration) and point to areas where computational fluid dynamics is challenged by nonlinearudaerodynamics flow prediction. These comparisons help to show where the modeling and simulation of novel aircraftudplatforms in the earliest stages of design development can contribute to a more successful design process by determininguddifficult nonlinear aerodynamics and helping to change the design before the later stages of the design process.
机译:本文展示了北乌达大西洋条约组织科技组织中获得的空气动力学成果的交叉比较和评估应用车辆技术201个任务组。 udThe的结果为五个参与组织和六种不同的计算流体动力学求解器。来自德国 - 荷兰风隧道的可用风隧道数据,并在低亚音速 UDSPEED中获得了结果,用于静态和动态壳体。比较有助于找到通用无人行运车辆( UDStable和Control配置)的空气动力学的空气动力学中的共同性和差异,并指向计算流体动力学被非线性 UDAerodyM动力学流动预测攻击计算流体动力学的区域。这些比较有助于展示新型飞机的建模和仿真在设计开发的最早阶段最早的阶段可以促进更成功的设计过程,通过确定 uddifficult非线性空气动力学并帮助改变设计过程的后期阶段之前的设计。

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