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Effect of fuselage diameter on aerodynamic characteristics for straight wing at low and high aspect ratio

机译:机身直径对低宽高高翼翼的直翼空气动力学特性的影响

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A computational code has been developed to investigate the effect of fuselage diameter with a combination of a straight wing on the aerodynamic characteristics.The case studies were performed on both wing-body combination at high wing aspect ratio(AR>4)and low wing aspect ratio(AR<4).The Prandtl’s Lifting Line Theory(LLT)and Helmbold’s Panel Method(HPM)were used to determine the wing lift and drag characteristics while Roskam’s Drag Prediction Method(RDPM)was used to compute the fuselage drag.The computed lift and drag coefficients obtained were then compared to verify the reliability of the computational results.It is found that a larger fuselage diameter contributes to the increment of the total drag of the wing-body combination without significant effect on the lift.The lift is mainly contributed by the wing for both low and high aspect ratio straight wing for low subsonic case.
机译:已经开发了一种计算代码来研究机身直径的效果与平局特性的直线组合。在高翼纵横比(AR> 4)和低机翼方面的翼体组合上进行案例研究比率(AR <4)。Prandtl的升降线理论(LLT)和Helmbold的面板方法(HPM)用于确定机翼升力和拖动特性,而ROSKAM的拖动预测方法(RDPM)用于计算机身拖动。计算然后比较获得的升力系数以验证计算结果的可靠性。发现更大的机身直径有助于翼体组合的总阻力的增量,而不会对电梯显着影响。主要是对于低亚音速箱的低纵横比直线和高纵横比的机翼贡献。

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