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Application of empirical and linear methods to VSTOL powered-lift aerodynamics

机译:经验和线性方法在VSTOL动力升力空气动力学中的应用

摘要

Available prediction methods applied to problems of aero/propulsion interactions for short takeoff and vertical landing (STOVL) aircraft are critically reviewed and an assessment of their strengths and weaknesses provided. The first two problems deal with aerodynamic performance effects during hover: (1) out-of-ground effect, and (2) in-ground effect. The first can be evaluated for some multijet cases; however, the second problem is very difficult to evaluate for multijets. The ground-environment effects due to wall jets and fountain flows directly affect hover performance. In a related problem: (3) hot-gas ingestion affects the engine operation. Both of these problems as well as jet noise affect the ability of people to work near the aircraft and the ability of the aircraft to operate near the ground. Additional problems are: (4) the power-augmented lift due to jet-flap effects (both in- and out-of-ground effects), and (5) the direct jet-lift effects during short takeoff and landing (STOL) operations. The final problem: (6) is the aerodynamic/propulsion interactions in transition between hover and wing-borne flight. Areas where modern CFD methods can provide improvements to current computational capabilities are identified.
机译:严格审查了适用于短距起飞和垂直降落(STOVL)飞机的航空/推进相互作用问题的可用预测方法,并对它们的优缺点进行了评估。前两个问题涉及悬停过程中的空气动力性能影响:(1)地外影响和(2)地内影响。对于某些多喷口情况,可以评估第一个。但是,第二个问题很难评估多喷嘴。壁流和喷泉流对地面的影响直接影响悬停性能。一个相关的问题:(3)吸入热气会影响发动机的运行。这些问题以及喷射噪声都会影响人们在飞机附近工作的能力以及飞机在地面附近工作的能力。其他问题是:(4)由于喷气襟翼效应(地面效应和地面效应)导致的动力增强升力,以及(5)短距起降(STOL)操作期间的直接喷气升力效应。最终的问题:(6)是悬停和机翼飞行之间过渡过程中的气动/推进相互作用。确定了现代CFD方法可以改善当前计算能力的区域。

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