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Wavelet multi-scale analysis of the circular cylinder wake under synthetic jets control

机译:合成射流控制下圆柱尾流的小波多尺度分析

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The wavelet method is used to study the multi-scale vortical structures of the flow around a circular cylinder without and with synthetic jet control at Re = 950. The velocity field is decomposed into 9 wavelet components, including one approximation component and 8 detail components. The first component shows the flow characteristics at low frequency. The dominant components represent large-scale vortical structures in the flow and they show similar distributions for the same wake pattern. Other detail components reflect the characteristics of relatively small-scale structures. The individual vortex dynamics underlying the complex flow can be extracted and thus reconstructed by the approximation and dominant components. Thus, we show an effective approach to reveal the flow physics from the complex flow.
机译:小波方法用于研究在Re = 950情况下不带合成射流控制和有合成射流控制的圆柱绕流的多尺度涡结构。速度场被分解为9个小波分量,包括一个近似分量和8个细节分量。第一部分显示低频下的流动特性。主要成分代表流中的大规模旋涡结构,并且对于相同的尾流模式,它们显示出相似的分布。其他细节组件反映了相对较小规模的结构的特征。可以提取复杂流下面的各个涡旋动力学,并由此通过逼近分量和主导分量进行重构。因此,我们展示了一种从复杂流中揭示流物理的有效方法。

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