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Model Scale and 'Real' Flight of Generic UCAV and Advanced Combat Aircraft - An Industrial Perspective

机译:通用UCAV和先进战斗机的模型规模和“真实”飞行-工业视角

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An industrial view on experimental and numerical investigations related to advanced combat aircraft needs is given. A critical comparison in between experimental and numerical results under wind tunnel conditions and real flight numerical simulations is presented. The Reynolds and Mach number influence on the aerodynamic behavior together with the development of the complex flowfields around generic UCAV configurations at transonic speed, medium and high angles of attack conditions is discussed. Static CFD results of forces and moments as well as the flow structure of the longitudinal and lateral flow conditions are compared to wind-tunnel measurements. Here combat aircraft and flying-wing type UCAV flow-phenomena of such as separation emerging at round and sharp leading edges into interacting vortex flows are shown. Also their possible development at transonic conditions causing interacting shock-systems are addressed. While wind-tunnel (low) Reynolds number, subsonic conditions are thought economic, they may be far off flight (high) Reynolds number and realistic subsonic and transonic Mach number speeds. Therefore also free-flight, full-scale conditions have been prepared to probe the possible differences with the experimental and numerical investigations of the design and early development process of future shapes. This will show the sensitivity and possible basic uncertainty of the stability & control investigations of modern combat aircraft due to insufficient full-scale, free-flight knowledge.
机译:给出了与先进战斗机需求相关的实验和数值研究的工业观点。提出了在风洞条件下的实验和数值结果与实际飞行数值模拟之间的关键比较。讨论了雷诺数和马赫数对空气动力学行为的影响,以及跨音速,中等和高攻角条件下通用UCAV配置周围复杂流场的发展。将力和力矩的静态CFD结果以及纵向和横向流动条件的流动结构与风洞测量结果进行了比较。此处显示了战斗机和飞翼式UCAV流现象,例如在圆形和尖锐的前缘处出现分离并相互作用的涡流的分离现象。还解决了它们在跨音速条件下引起相互作用的冲击系统的可能发展。尽管认为风洞(低)雷诺数,亚音速条件是经济的,但它们可能离飞行(高)雷诺数和现实的亚音速和跨音速马赫数速度相去甚远。因此,还准备了自由飞行的全尺寸条件,以通过对未来形状的设计和早期开发过程进行实验和数值研究来探究可能的差异。这将表明由于缺乏全面的,自由飞行的知识,现代战斗机的稳定性和控制研究的敏感性和可能的​​基本不确定性。

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