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Spatiotemporal representation of the dynamic modes in turbulent cavity flows

机译:湍流腔内动力模式的时空表达

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Proper orthogonal decomposition (POD) and dynamic mode decomposition (DMD) were used to extract the coherent structures in turbulent cavity flows. The spatiotemporal representation of the modes was achieved by performing the circular convolution of a change of basis on the data sequence, wherein the transformation function was extracted from the POD or DMD. The spatiotemporal representation of the modes provided significant insight into the evolutionary behavior of the structures. Self-sustained oscillations arise in turbulent cavity flows due to unsteady separation at the leading edge. The turbulent cavity flow at Re_D= 12,000 and a length to depth ratio L/D = 2 was analyzed. The dynamic modes extracted from the data clarified the presence of self-sustained oscillations. The spatiotemporal representation of the POD and DMD modes that caused self-sustained oscillations revealed the prevalent dynamics and evolutionary behavior of the coherent structures from their formation at the leading edge to their impingement at the trailing edge. A local minimum in the mode amplitude representing the energy contributions to the flow was observed upon the impingement of coherent structure at the trailing edge. The modal energy associated with the periodic formation of organized coherent structures followed by their dissipation upon impingement revealed the oscillatory behavior over time.
机译:适当的正交分解(POD)和动态模式分解(DMD)用于提取湍流腔中的相干结构。模式的时空表示是通过对数据序列执行基础变化的循环卷积来实现的,其中转换函数是从POD或DMD中提取的。模式的时空表示为结构的演化行为提供了重要的见识。由于前缘处的不稳定分离,在湍流腔中会产生自持振荡。分析了Re_D = 12,000和长深比L / D = 2时的湍流腔流。从数据中提取的动态模式阐明了自持振荡的存在。 POD和DMD模态的时空表示引起了自持振荡,揭示了相干结构从其前缘形成到后缘碰撞的普遍动力学和演化行为。在后缘碰撞相干结构时,观察到了模式振幅的局部最小值,代表了对流的能量贡献。与有组织的相干结构的周期性形成相关联的模态能量,随后在撞击时消散,表明了随时间的振荡行为。

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