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The Effect of Canard to the Aerodynamic Behavior of Blended Wing Body Aircraft

机译:迫使小管对混纺机翼体飞机的空气动力学行为的影响

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This paper presents a study on the effect of canard setting angle on the aerodynamic characteristic of a Blended Wing Body (BWB). Canard effects to BWB aerodynamic characteristics are not widely investigated. Hence the focus of the study is to investigate the variations of lifts, drags and moments when the angles of attack are varied at different canard setting angles. Wind tunnel tests were performed on BWB aircraft with canard setting angles, δ ranging from -20? to 20?. Angles of attack, α were varied from -10? to 10?. Aspect ratio and canard planform area were kept fixed. All tests were conducted in the subsonic wind tunnel at Universiti Teknologi MARA, at Mach number of 0.1. The streamlines flow, at the upper surface of the canard was visualized using mini tuft. Result shows that the lift coefficient does not change much with different canard setting angles. As expected, the lift coefficient increases with increasing angles of attack at any canard setting angle. In general, the moment coefficient increases as the canard setting angle is increased. The results obtained in this research will be of importance to the understanding of aerodynamic behavior of BWB employing canard in its configuration.
机译:本文介绍了迫喇叭设定角对混纺机翼体(BWB)的空气动力学特性的影响。对BWB空气动力学特性的Canard Effects并未被广泛研究。因此,研究的焦点是研究攻击角在不同的豆设定角度变化时升降机,拖动和时刻的变化。在BWB飞机上进行风洞试验,用牛设定角度,δ从-20次测距到20?攻击角度,α从-10变化?到10?保持宽高比和加管扁平尺寸区域。所有测试都在Teknologi Mara的Universiti Teknologi Mara的亚音风隧道中进行,Mach数量为0.1。使用Mini Tuft可视化豆类的上表面的流动流。结果表明,不同的小豆设定角度不会改变大量变化。如预期的那样,随着任何轿车设定角度的攻击角度增加,提升系数增加。通常,随着轿车设定角度的增加,矩系数增加。本研究中获得的结果将对在其配置中使用迫使BWB的空气动力学行为的理解。

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