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A hybrid two-dimensional orthogonal wavelet multiresolution and proper orthogonal decomposition technique for the analysis of turbulent wake flow.

Authors :
Zheng, Yan
Zhang, Dan
Wang, Tianbo
Rinoshika, Hiroka
Rinoshika, Akira
Source :
Ocean Engineering. Nov2022, Vol. 264, pN.PAG-N.PAG. 1p.
Publication Year :
2022

Abstract

A hybrid two-dimensional orthogonal wavelet multiresolution and proper orthogonal decomposition technique is developed to analyze the wake flow behind a semi cylinder. The two-dimensional orthogonal wavelet analysis is first applied to decompose the measured velocity fields into four wavelet components based on their spatial scales. Then the extracted multi-scale structures are further investigated based on proper orthogonal decomposition. The modal energy distributions of multi-scale flow structures suggest that the dominance of first two POD modes is reduced and the relative energy becomes more distributed as the flow structure changes from large-scale to small-scale. The first two POD modes of intermediate-scale structure also appear in a mode pair and they are related to secondary resonance accompanied with large-scale flow oscillation. The POD mode 3 of intermediate-scale structure suggest the existence of symmetric vortex shedding pattern. The first two POD modes of small-scale structure also display a symmetrically distributed vortex pair and the distance between adjacent vortices is about half of the case of mode 3 of intermediate-scale structure. The PSD distributions of POD modes of multi-scale structures suggest that the bandwidth of PSD becomes less concentrated as the flow structure varies from large-scale to small-scale. Distinctive flow patterns associated with first and second order harmonics of fundamental flow oscillation can be successfully extracted from the dominating POD modes of intermediate-scale and small-scale structures. The proposed hybrid technique provides a tool for relate the most energetic flow events over a period of time with multi-scale structures cascaded in the turbulence flow. • A hybrid 2D orthogonal wavelet multiresolution and proper orthogonal decomposition technique is developed. • The multi-scale structures of semi cylinder wake are decomposed by 2D orthogonal wavelet analysis. • The decomposed multi-scale structures are further analyzed by POD. • Distinctive flow patterns are extracted from the dominating POD modes of intermediate-scale and small-scale structures. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00298018
Volume :
264
Database :
Academic Search Index
Journal :
Ocean Engineering
Publication Type :
Academic Journal
Accession number :
160982240
Full Text :
https://doi.org/10.1016/j.oceaneng.2022.112547