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ID 56126
フルテキストURL
著者
Kouchi, Toshinori Department Mechanical and System Engineering, Okayama University
Masuya, Goro Department Mechanical and Aerospace EngineeringTohoku University
Yanase, Shinichiro Department Mechanical and System Engineering, Okayama University
抄録
A new image process for quantifying both convection velocities (U C) and scales (λ d) of turbulent structures captured in a fast-framing schlieren movie is presented. We obtained 90 time-series schlieren images of a transverse jet into a Mach 2 supersonic flow with 1-MHz sampling. The schlieren images captured not only the shock and expansion waves but also the turbulent structures within the jet and the boundary layer. The image intensities were extracted along the outer edges of the jet and the boundary layer and were remapped as a time–space intensity map. The time–space map exhibited swept stripe patterns, indicating that stable turbulent structures were periodically generated and convected downstream. The angle and interval of the stripe patterns were efficiently extracted using the two-dimensional Fourier transform, which corresponded to U C and λ d of the dominant structures. The zero-padding fast Fourier transform and the sub-pixel estimation of the spectral peak positions in the Fourier domain improved the accuracy for evaluating the angle and interval of the stripes, which resulted in the accurate evaluation of U C and λ d. The proposed method was validated by comparing U C obtained using the proposed method to those obtained via schlieren image velocimetry for both the transverse jet and the supersonic boundary layer.
備考
This is an Accepted Manuscript of an article published by Springer
発行日
2017-07-07
出版物タイトル
Experiments in Fluids
58巻
8号
出版者
Springer
開始ページ
98
ISSN
07234864
NCID
AA10447762
資料タイプ
学術雑誌論文
言語
英語
OAI-PMH Set
岡山大学
論文のバージョン
author
DOI
Web of Science KeyUT
関連URL
isVersionOf https://doi.org/10.1007/s00348-017-2377-z