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Proper Orthogonal Decomposition Analysis of the Large-scale Dynamics of a Round Turbulent Jet in Counterflow by Rovira, Marc ;Engvall, Klas ;Duwig, Christophe is a Engineering article available to read on EtoBox.

What is Proper Orthogonal Decomposition Analysis of the Large-scale Dynamics of a Round Turbulent Jet in Counterflow about?

Although the mean flow features of the turbulent jet in counterflow have been studied in the past, the large-scale dynamics of this flow configuration remain unexplored. The present work presents the modal analysis, through proper orthogonal decomposition (POD), of large eddy simulations (LESs) of counterflowing jets at different jet-tocounterflow velocity ratios (α = 2.2, 3.4, 5.1) reported in detail by Rovira, Engvall, and Duwig [Phys. Fluids 32, 045102 (2000)]. In the present study, a qualitative investigation of the three-dimensional (3D) turbulent structure of this jet configuration is performed by vortex identification. Additionally, a simplified description of the origin and development of these coherent structures is presented. Planar two-dimensional (2D) POD results for the case with α = 3.4 are directly compared and found to be in close agreement with the results available literature. In this case, over an equal time interval, temporal and spatial resolutions are observed to have a minor effect on mode energy content. All three cases are also analyzed with 3D POD and the evolution of the peak mode frequency with α is studied. Additionally, by employing a wavelet transform

Who reads Proper Orthogonal Decomposition Analysis of the Large-scale Dynamics of a Round Turbulent Jet in Counterflow?

It is typically read by researchers, students, and practitioners in Engineering.

Author
Rovira, Marc ;Engvall, Klas ;Duwig, Christophe
Publisher
American Physical Society (APS)
Published
2021
Language
EN
Field
Engineering (Physical Sciences)

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