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Numerical analysis of propeller effects on wing aerodynamic: tip mounted and distributed propulsion

机译:螺旋桨对机翼空气动力学影响的数值分析:叶尖安装和分布式推进

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The purpose of this investigation is determinate the effects of propeller on wing aerodynamic, both for a propeller mounted in the middle of the wing, and for tip mounted propeller. Especially, it is investigated how a tip-mounted propeller can decrease wing induced drag, and how distributed propulsion can increase the high-lift aerodynamic. Analyses are carried out using a Virtual Disk Model on CFD software, showing a good agreement comparing numerical results with experimental data obtained by previous works. Wing tip engine with propeller, has been employed on a general aviation aircraft wing with an installed thrust to accomplish with cruise performance, reducing the induced drag. Distributed propeller engines on the wing allows improving of low speed performance, increasing the aircraft lift coefficient. Induced drag can be reduced of about 2-3% a low cruise lift coefficient, until 8-10% at relative high cruise lift coefficient. Maximum achievable lift coefficient could be increased of about 20-30% in clean configuration, and more than 50% in flapped configuration.
机译:该研究的目的是确定螺旋桨对机翼空气动力学的影响,无论是安装在机翼中部的螺旋桨还是叶尖安装的螺旋桨。特别是,研究了安装在末端的螺旋桨如何减少机翼引起的阻力,以及分布式推进如何增加高升空空气动力学。分析是使用CFD软件上的虚拟磁盘模型进行的,显示出很好的一致性,可以将数值结果与以前的工作获得的实验数据进行比较。带有螺旋桨的翼尖发动机已用于通用航空机翼,其推力已安装,可实现巡航性能,从而减少了感应阻力。机翼上的分布式螺旋桨发动机可改善低速性能,增加飞机升力系数。低巡航升力系数可以将感应阻力降低约2-3%,直到相对较高的巡航升力系数达到8-10%。在清洁配置中,可达到的最大升力系数可以增加大约20%至30%,而在襟翼配置中,则可以增加50%以上。

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