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Estimation of three-dimensional aerodynamic damping using CFD

机译:使用CFD估算三维空气动力学阻尼

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Aeroelastic phenomena of stall flutter are the result of the negative aerodynamic damping associated with separated flow. From this basis, an investigation has been conducted to estimate the aerodynamic damping from a time-marching aeroelastic computation. An initial investigation is conducted on the NACA 0012 aerofoil section, before transition to 3D propellers and full aeroelastic calculations. Estimates of aerodynamic damping are presented, with a comparison made between URANS and SAS. Use of a suitable turbulence closure to allow for shedding of flow structures during stall is seen as critical in predicting negative damping estimations. From this investigation, it has been found that the SAS method is able to capture this for both the aerofoil and 3D test cases.
机译:失速颤动的空气弹性现象是与分离流动相关的负空气动力阻尼的结果。在此基础上,已经进行了一项研究,以从时间行进的气动弹性计算中估算出气动阻尼。在过渡到3D螺旋桨和完整的空气弹性计算之前,会对NACA 0012机翼截面进行初步研究。给出了空气动力阻尼的估算值,并对URANS和SAS进行了比较。在失速期间,使用合适的湍流封闭装置以允许流动结构脱落被认为是预测负阻尼估计的关键。从这项调查中,我们发现SAS方法能够针对机翼和3D测试用例进行捕获。

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