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PIV based POD analysis of coherent structures in flow patterns generated by triple interacting buoyant plumes

机译:三重交流浮力羽膜产生的流动模式相干结构的PIV基于POD分析

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The paper performs an investigation on multi-scale coherent structures that exist in different flow patterns of triple interacting plumes. Time-averaged and turbulent flow characteristics are first obtained by the two-dimensional (2-D) particle image velocimetry (PIV) technique. Proper orthogonal decomposition (POD) method is then applied to extract the dominant coherent structures. Energy contributions, POD modes, and POD coefficients are systematically explored to understand the spatial-temporal characteristics of the coherent structures.The first three POD modes are most important in the turbulent kinetic energy (TKE). Mode 1, as the most dominant mode, can contain about 10% TKE in an average sense. In addition, the first 12-14 POD modes can totally contribute 50% TKE. Hierarchical four-scale flow structures, independent of the flow patterns, are clearly identified when mode number increases, which are successively characterized by main flows (the 1st scale), larger-scale outer-side vortex rings (the 2nd scale), shear-layer vortex shedding (the 3rd scale), and smaller-scale homogeneous turbulent vortices (the 4th scale).Frequency spectra analysis confirms the co-existence of lower-frequency and higher-frequency periodic cycles in one certain POD mode. Dominant frequencies of the first three POD coefficient series (alpha(1)-alpha(3)) fall into the range of 0.025-0.187 Hz. Probability density analysis has identified negative/positive peak probability densities of the series alpha(1). Cumulative probabilities of negative and positive coefficients are approximately equivalent during the sampling period.
机译:本文对三重交互羽毛的不同流动模式中存在的多尺度相干结构进行了研究。通过二维(2-D)粒子图像速度(PIV)技术首先获得时间平均和湍流特性。然后施加适当的正交分解(POD)方法以提取主要相干结构。系统地探索能量贡献,豆荚模式和POD系数以了解相干结构的空间时间特性。前三种豆荚模式在湍流动能(TKE)中最重要。模式1作为最主导模式,可以在平均意义上包含大约10%的TKE。此外,前12-14个POD模式可以完全贡献50%TKE。当模式数量增加时清楚地识别出独立于流动模式的分层四尺度流动结构,这是由主流(第一刻度)的连续特征,大规模的外侧涡旋环(第二刻度),剪切 - 层涡旋脱落(第3刻度)和较小均匀的湍流涡流(第4尺度)。频谱分析证实了在一个特定POD模式下较低频率和更高频率的周期周期的共存。前三个POD系数序列的主导频率(Alpha(1) - alpha(3))落入0.025-0.187 Hz。概率密度分析已鉴定α(1)的负/正峰概率密度。在采样时段期间,负极和正系数的累积概率大致相当。

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