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Published April 25, 2024 | Published
Journal Article Open

Spectral proper orthogonal decomposition of harmonically forced turbulent flows

  • 1. ROR icon California Institute of Technology

Abstract

Many turbulent flows exhibit time-periodic statistics. These include turbomachinery flows, flows with external harmonic forcing and the wakes of bluff bodies. Many existing techniques for identifying turbulent coherent structures, however, assume the statistics are statistically stationary. In this paper, we leverage cyclostationary analysis, an extension of the statistically stationary framework to processes with periodically varying statistics, to generalize the spectral proper orthogonal decomposition (SPOD) to the cyclostationary case. The resulting properties of the cyclostationary SPOD (CS-SPOD for short) are explored, a theoretical connection between CS-SPOD and the harmonic resolvent analysis is provided, simplifications for the low and high forcing frequency limits are discussed, and an efficient algorithm to compute CS-SPOD with SPOD-like cost is presented. We illustrate the utility of CS-SPOD using two example problems: a modified complex linearized Ginzburg–Landau model and a high-Reynolds-number turbulent jet.

Copyright and License

© The Author(s), 2024. Published by Cambridge University Press

Funding

The authors gratefully acknowledge support from the United States Office of Naval Research under contract N00014-20-1-2311 with Dr S. Martens as program manager and the Federal Aviation Administration under grant 13-C-AJFE-UI. This work was supported in part by high-performance computer time and resources from the DoD High Performance Computing Modernization Program. This work used Stampede2 at Texas Advanced Computing Center through allocation CTS120005 from the Advanced Cyberinfrastructure Coordination Ecosystem: Services & Support (ACCESS) program, which is supported by National Science Foundation grants nos 2138259, 2138286, 2138307, 2137603 and 2138296.

Files

spectral-proper-orthogonal-decomposition-of-harmonically-forced-turbulent-flows.pdf

Additional details

Created:
September 23, 2024
Modified:
September 23, 2024