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Numerical Investigation on the Influence of Geometrical Parameters on the Aerodynamic Performance of a Small‑Scale Ducted Fans System

机译:几何参数对小型尺度粉丝系统气动性能影响的数值研究

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摘要

Small-scale ducted fans can be used to generate the necessary force and moment for propulsion in many applications. Inthe present work, the aerodynamic performance of a ducted fans system (DFS), which consists two distinct counter-rotatingducted fans, is analyzed numerically by considering the influence of different geometrical parameters that include rotationalspeed, eccentricity, and the distance between the two fans. The results reveal that the force and moment in the axial directionare orders of magnitude higher than those in the other two directions under typical conditions. The aerodynamic performanceof the DFS shows only minor vibrations for dimensionless rotational speed N below 1 which corresponds to the criticalphysical rotational speed of 2.10~4 rpm. Moreover, the force and moment increase dramatically for higher N, following thetypical relationship between rotational speed and force for rotor systems. The eccentricity contributes to significant increasein magnitudes on both force and moment in all three directions, whereas the distance between the twin fans exhibits littleimpact. The numerical simulations suggest that the exploitation of eccentricity is the most efficient approach to control thetotal output of force and moment of the DFS within the investigated range of geometrical parameters.
机译:小型管道风扇可用于在许多应用中产生必要的力量和力矩。在目前的工作,管道风扇系统(DFS)的空气动力学性能,包括两个不同的反向旋转通过考虑包括旋转的不同几何参数的影响,数值分析了管道风扇。速度,偏心,以及两个风扇之间的距离。结果表明,轴向的力和力矩是典型条件下的其他两个方向上的数量级。空气动力学性能DFS仅显示较小的旋转速度N以下的小振动,这对应于临界物理转速为2.10〜4 rpm。此外,在遵循的情况下,力和力矩急剧增加转子系统转速与力的典型关系。偏心率有助于显着增加在所有三个方向的两种力量和时刻的大小,而双球迷之间的距离呈现得很少影响。数值模拟表明,偏心率的开发是控制的最有效的方法在研究的几何参数范围内,DFS的力和时刻的总输出。

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