Convergence study of multi-field singular value decomposition for turbulence fields

Fuente: arXiv
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Main Authors: Yatomi, Go, Nakata, Motoki
Format: Preprint
Published: 2024
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author Yatomi, Go
Nakata, Motoki
author_facet Yatomi, Go
Nakata, Motoki
contents Convergence of a matrix decomposition technique, the multi-field singular value decomposition (MFSVD) which efficiently analyzes nonlinear correlations by simultaneously decomposing multiple fields, is investigated. Toward applications in turbulence studies, we demonstrate that SVD for an artificial matrix with multi-scale structures reproduces the power-law-like distribution in the singular value spectrum with several orthogonal modes. Then, MFSVD is applied to practical turbulence field data produced by numerical simulations. It is clarified that relative errors in the reproduction of quadratic nonlinear quantities in multi-field turbulence converge remarkably faster than the single-field case, which requires thousands of modes to converge.
format Preprint
id arxiv_https___arxiv_org_abs_2411_03739
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Convergence study of multi-field singular value decomposition for turbulence fields
Yatomi, Go
Nakata, Motoki
Fluid Dynamics
Computational Physics
Convergence of a matrix decomposition technique, the multi-field singular value decomposition (MFSVD) which efficiently analyzes nonlinear correlations by simultaneously decomposing multiple fields, is investigated. Toward applications in turbulence studies, we demonstrate that SVD for an artificial matrix with multi-scale structures reproduces the power-law-like distribution in the singular value spectrum with several orthogonal modes. Then, MFSVD is applied to practical turbulence field data produced by numerical simulations. It is clarified that relative errors in the reproduction of quadratic nonlinear quantities in multi-field turbulence converge remarkably faster than the single-field case, which requires thousands of modes to converge.
title Convergence study of multi-field singular value decomposition for turbulence fields
topic Fluid Dynamics
Computational Physics
url https://arxiv.org/abs/2411.03739