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NUMERICAL ADAPTATION OF A ROTATING BLADE IN HOVER TO AN EQUIVALENT FIXED-WING LAYOUT COMPARISON OF TIP VORTEX ROLL-UP

机译:悬停旋转叶片对等价涡旋式滚动固定翼布局的数值适应

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This contribution relates to the simulation of the flow around a rotor blade in hovering flight conditions. We here propose a new methodology of framework adaptation, using a comprehensive rotor code and high-fidelity numerical simulations. We construct an equivalent fixed-wing configuration from a rotating blade, in which centrifugal and Coriolis forces are neglected. The effect of this approximation on the solution is analyzed. The method is validated by a detailed comparison with wind tunnel data from the literature, concerning aerodynamic properties and tip vortex roll-up. This validation also includes variations of the pitch angle and rotational speed, up to transonic tip velocities. Compared to previously published methods of framework adaptation, the new hybrid method is found to reproduce more accurately the flow around a rotating blade tip.
机译:该贡献与在悬停飞行条件下围绕转子叶片的流动的模拟有关。我们在这里提出了一种新的框架适应方法,该方法使用了全面的转子代码和高保真数值模拟。我们用旋转叶片构造了等效的固定翼构型,其中离心力和科里奥利力被忽略了。分析了这种近似对解的影响。通过与文献中有关空气动力学特性和尖端涡旋卷起的风洞数据进行详细比较,验证了该方法的有效性。该验证还包括俯仰角和旋转速度的变化,直至跨音速尖端的速度。与以前发布的框架适应方法相比,发现新的混合方法可以更精确地重现围绕旋转叶片尖端的流动。

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