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Numerical studies influence configuration fairing flap track airfoil type naca 4412 and naca 6412 character unmanned aerial vehicle (UAV)

机译:数值研究影响配置整流罩翼型翼型型Naca 4412和Naca 6412特征无人驾驶车辆(UAV)

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Wings have a function of changing the air flowing into force lift, and drag. It can reduce the drag is fairing flap track, where its function can reduce the obstacles caused by the effects of compressibility, fairing flap track also has a major influence on reducing the coefficient drag on airfoil. In this study, we observed the addition of fairing flap track to airfoil, fairing inspired by Sailfish and Blue Shark fish, its fins known to have speeds of 60 km/h. The independent variable in this research is compare airfoil NACA 4412 and NACA 6412, while the dependent variable is influence of fairing flap track configuration on unmanned aerial vehicle (UAV) character by knowing coefficient lift, coefficient drag and lift to drag ratio using software computational fluid dynamic (CFD). Simulation results know that the coefficient drag airfoil NACA 4412 decreased 0.3%, coefficient lift decreased 0.5% and coefficient drag airfoil NACA 6412 also decreased 0.4%, coefficient lift decreased 0.7%. It can be concluded that the addition of fairing on airfoil is very influential in reducing the value of coefficient drag and improve the coefficient lift on airfoil.
机译:翅膀具有改变流动升力的空气和拖动的功能。它可以减少阻力是公平的襟翼轨道,其中它的功能可以减少压缩性效果引起的障碍,整流罩轨道也对降低翼型的系数拖动产生了重大影响。在这项研究中,我们观察到翼型,通过旗鱼和蓝鲨鱼的翅膀的翅片进行了整理的襟翼轨道,其翅片具有60 km / h的速度。本研究中的独立变量是比较翼型Naca 4412和Naca 6412,而所属变量是通过了解通过软件计算流体的系数提升,系数拖曳和升力来拖曳比率的整体襟翼轨道配置对无人驾驶飞行器(UAV)特征的影响动态(CFD)。仿真结果知道系数拖翼型Naca 4412降低0.3%,系数升程降低0.5%,系数拖曳翼型Naca 6412也降低了0.4%,系数升降量下降0.7%。可以得出结论,在降低系数拖动的值和改善翼型上的系数升力时,在翼型上添加对翼型的整流量非常有影响力。

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