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Development of Pneumatic Channel Wing Powered-Lift Advanced Super-STOL Aircraft

机译:气动通道机翼动力提升式超级STOL飞机的研制

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摘要

The powered-lift Channel Wing concept has been combined with pneumatic Circulation Control aerodynamic and propulsive technology to generate a Pneumatic Channel Wing configuration intended to have Super-STOL or VSTOL capability while eliminating many of the operational problem areas of the original Channel Wing vehicle. A preliminary design study of this pneumatic vehicle based on previous wind-tunnel and flight-test data for the two technologies integrated into a simple Pneumatic Channel Wing (PCW) configuration showed very strong Super-STOL potential. Wind-tunnel development and evaluations of a PCW powered model conducted at Georgia Tech Research Institute (GTRI) have shown substantial lift capabilities for the blown configuration (C(sub L) values of 8.5 to 9.0). Variation in blowing of the channel was shown to be more efficient than variation in propeller thrust. Also revealed was the ability to operate unstalled at very high angles of attack of 40 deg-45 deg, or to achieve very high lift at much lower angle of attack to increase visibility and controllability. In order to provide greater flexibility in Super-STOL takeoffs and landings, the blown model also displayed the ability to interchange thrust and drag by varying blowing without any moving parts. This paper presents these experimental results, discusses variations in the configuration geometry under development, and extends this integrated technology to advanced design studies of PCW-type vehicles.
机译:动力提升通道翼概念已与气动循环控制空气动力学和推进技术相结合,以产生旨在具有Super-STOL或VSTOL能力的气动通道翼配置,同时消除了原始通道翼车辆的许多操作问题区域。根据先前的风洞和飞行测试数据,将这两种技术集成到简单的气动通道翼(PCW)配置中,对该气动汽车进行的初步设计研究显示出非常强大的Super-STOL潜力。在佐治亚理工学院(GTRI)进行的风洞开发和PCW动力模型评估表明,吹塑配置(C(sub L)值为8.5至9.0)具有显着的提升能力。事实表明,通道吹气变化比螺旋桨推力变化更有效。还显示了能够在40度至45度的非常高的迎角下驻足操作,或在非常低的迎角下实现非常高的升力以增加可见性和可控性的能力。为了在Super-STOL起飞和着陆时提供更大的灵活性,吹塑模型还显示了通过改变吹塑来互换推力和阻力的能力,而无需任何运动部件。本文介绍了这些实验结果,讨论了正在开发的配置几何形状的变化,并将这种集成技术扩展到PCW型车辆的高级设计研究中。

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