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Study on vortex shedding mode on the wake of horn/ridge ice contamination under high-Reynolds conditions

机译:高雷诺条件下角/脊冰污染后的涡旋脱落模式研究

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This paper studied the unsteadiness of vortex motion produced by a three-dimensional wing section with horn/ridge ice contamination. Using improved delayed detached eddy simulation method, multi-scale vortex and their associated flow structures were successfully captured. Results have shown a diversity of unsteadiness scales at different time series, including shear layer instability, vortex pairing, co-rotating and breaking up. Proper orthogonal decomposition was then introduced to extract the characteristic vortex shedding modes with scheduling the eigenvalues lambda(i) from large to small. The dominate and secondary proper orthogonal decomposition modes under horn ice condition were displayed, which could be illustrated as fluctuations near recirculation zone, and large-scale vortex shedding/reattaching motion, respectively. The proper orthogonal decomposition modal characteristics for ridge ice showed that vortex scales varied from large to small. The trajectory of large-scale vortex reattaching and co-rotating exist simultaneously with the pressure peak and recover, which also verified the association of proper orthogonal decomposition modes with different scales of vortices. Future works would be presented on demonstration of the complex structures and the dynamic features in such flow.
机译:本文研究了带有角/脊冰污染的三维机翼截面产生的涡旋运动的不稳定性。使用改进的延迟分离涡模拟方法,成功捕获了多尺度涡旋及其相关的流动结构。结果表明,在不同的时间序列上,不稳定尺度的多样性,包括剪切层的不稳定性,涡旋对,同向旋转和破裂。然后引入适当的正交分解,以将特征值lambda(i)从大到小调度来提取特征涡旋脱落模式。显示了在角冰条件下的主要和次要固有正交分解模式,可以分别表示为再循环区附近的波动和大规模涡旋脱落/重新附着运动。脊冰的适当正交分解模态特征表明,涡旋尺度从大到小变化。大型涡旋的重新附着和同向运动的轨迹与压力峰值同时出现并恢复,这也验证了适当正交分解模式与不同尺度涡旋之间的联系。未来的工作将展示这种流程中的复杂结构和动态特征。

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