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Drag/thrust analysis of jet-propelled transonic transport aircraft; Definition of physical drag components

机译:喷气式跨音速运输机的阻力/推力分析;物理阻力组件的定义

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Drag/thrust analysis of jet-propelled transonic transport aircraft on the basis of calculated viscous flow is discussed. Unique definitions for viscous drag plus wave drag and for induced drag are established. The concept of additive throughflow drag is introduced. Drag/thrust bookkeeping is given attention. All drag components can be calculated in the flow region adjacent to the aircraft, where numerical accuracy is expectedly highest. Uniform handling of complex aircraft configurations is brought within reach. Near-field/far-field drag balances are exact. Computational aspects are discussed, in particular the elimination of spurious drag sources. Numerical examples are given for a wing-body and for a wing-body-pylon-nacelle configuration. In either case, the spurious drag sources are eliminated. Acceptable agreement is obtained for the total drag in the first case, and for the installation drag in the second case. Extension of the analysis presented to propeller-driven transport aircraft is straightforward.
机译:讨论了基于计算出的粘性流的喷气跨音速运输机的阻力/推力分析。建立了粘性阻力加波浪阻力和诱导阻力的唯一定义。介绍了附加通流阻力的概念。拖动/推力簿记将引起注意。可以在飞机附近的流动区域中计算所有阻力分量,在该流动区域中,数值精度最高。可以轻松处理复杂的飞机配置。近场/远场阻力平衡是精确的。讨论了计算方面,尤其是消除了杂散阻力源。给出了机翼机身和机翼吊架机舱配置的数值示例。在这两种情况下,都消除了寄生阻力源。对于第一种情况下的总阻力,对于第二种情况下的安装阻力,可以获得可接受的协议。将分析结果扩展到螺旋桨驱动运输机很简单。

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