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Performance Comparison of Different Winglets byCFD

机译:不同幼蝇的性能比较bycfd

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Induced drag is one of the major drag forces created in the finite wing of an aircraft. It is generated due to the pressure variation of the upper and lower portion of the wing. This drag leads to more fuel consumption and reduces speed and range of an aircraft. Winglet is a wingtip device which can reduce induced drag by reducing the pressure gradient at the wingtip of the wing. Several types of winglets have been introduced so far. The primary focus of this study is to investigate the performances of different types of winglets on a straight rectangular wing at subsonic cruise condition of flight. A rectangular wing of NACA 2412 airfoil and different types of winglets are designed by SolidWorks software and the wing models are analyzed by ANSYS Fluent software. Coefficients of lift, coefficients of drag and lift to drag ratios are measured at different angle of attacks of the wing with and without the winglets. Then comparison is carried out among them.It is found that all winglet mounted wing models provide higher lift coefficients, lower drag coefficients and higher lift to drag ratios than the wing model without winglet. Moreover, raked winglet yields the best lift to drag ratio at low angle of attacks but blended winglet with 45° cant angle provides the highest lift to drag ratio at high angle of attacks.
机译:诱导阻力是在飞机的有限翼中产生的主要拖曳力之一。由于机翼的上部和下部的压力变化,产生它。这张拖动导致更多的燃料消耗并降低了飞机的速度和范围。 Winglet是一种翼面装置,可以通过减小机翼的翼尖处的压力梯度来减少诱导率。到目前为止已经介绍了几种类型的小翼。本研究的主要焦点是调查在亚源巡航飞行条件下直角翼的不同类型小翼的性能。通过SolidWorks软件设计了Naca 2412翼型的矩形翼和不同类型的小翼设计,并且通过ANSYS流畅的软件分析机翼模型。升力系数,拖曳系数与拖曳比率以不同的攻角测量,在机翼的不同角度下,没有小翼。然后在它们中进行比较。发现,所有小翼安装的机翼模型都提供更高的升力系数,较低的拖动系数和更高的升力,以拖动比没有小翼的机翼模型。此外,Raked Windlet在低攻角处产生最佳升力,但是具有45°的角度的混合小翼,可在高攻角以高角度提供最高升力。

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