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首页> 外文期刊>Theoretical and Computational Fluid Dynamics >Leading-edge flow criticality as a governing factor in leading-edge vortex initiation in unsteady airfoil flows
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Leading-edge flow criticality as a governing factor in leading-edge vortex initiation in unsteady airfoil flows

机译:作为非定常翼型流动的前沿涡旋启动中的主导流量临界。

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摘要

A leading-edge suction parameter (LESP) that is derived from potential flow theory as a measure of suction at the airfoil leading edge is used to study initiation of leading-edge vortex (LEV) formation in this article. The LESP hypothesis is presented, which states that LEV formation in unsteady flows for specified airfoil shape and Reynolds number occurs at a critical constant value of LESP, regardless of motion kinematics. This hypothesis is tested and validated against a large set of data from CFD and experimental studies of flows with LEV formation. The hypothesis is seen to hold except in cases with slow-rate kinematics which evince significant trailing-edge separation (which refers here to separation leading to reversed flow on the aft portion of the upper surface), thereby establishing the envelope of validity. The implication is that the critical LESP value for an airfoil-Reynolds number combination may be calibrated using CFD or experiment for just one motion and then employed to predict LEV initiation for any other (fast-rate) motion. It is also shown that the LESP concept may be used in an inverse mode to generate motion kinematics that would either prevent LEV formation or trigger the same as per aerodynamic requirements.
机译:本文采用从势流理论导出的前缘吸力参数(LESP)来研究前缘涡(LEV)的形成。提出了LESP假设,该假设指出,对于特定翼型形状和雷诺数,非定常流中LEV的形成发生在LESP的临界常数值,而与运动运动学无关。这一假设通过CFD和LEV形成流动实验研究的大量数据进行了验证。这一假设被认为是成立的,但低速运动的情况除外,低速运动表现出显著的后缘分离(此处指的是导致上表面尾部逆流的分离),从而建立了有效性包络线。这意味着翼型雷诺数组合的临界LESP值可以使用CFD或实验对一个运动进行校准,然后用于预测任何其他(快速)运动的LEV起始。研究还表明,LESP概念可在反向模式下使用,以产生运动运动学,从而防止LEV形成,或根据空气动力学要求触发LEV形成。

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