このエントリーをはてなブックマークに追加


ID 56136
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Kouchi, Toshinori Department Mechanical and System Engineering, Okayama University
Yamaguchi, Shingo Department Mechanical and System Engineering, Okayama University
Koike, Shunske Next Generation Aeronautical Innovation Hub Center, Aeronautical Technology Directorate, JAXA
Nakajima, Tsutomu Aerodynamics Research Unit, Aeronautical Technology Directorate, JAXA
Sato, Mamoru Aerodynamics Research Unit, Aeronautical Technology Directorate, JAXA
Kanda, Hiroshi Aerodynamics Research Unit, Aeronautical Technology Directorate, JAXA
Yanase, Shinichiro Department Mechanical and System Engineering, Okayama University
Abstract
We visualized the shock buffets on a two-dimensional transonic airfoil with and without vortex generators (VGs) by using a fast-framing focusing schlieren imaging. The focusing schlieren visualization showed that the flow three-dimensionality around the airfoil became remarkable with installing the VGs. This implies that narrow depth of focus of imaging systems was a key to accurately capture the characteristics of the shock oscillation due to the buffet for the cases with VGs. The time-resolved imaging also revealed that non-periodic components were included in the shock oscillation due to the buffet for the cases with VGs. This prevented Fourier analysis from being applied. We used wavelet analysis to extract the characteristic of the shock oscillation for the cases with VGs. The wavelet spectrograms revealed that the low-frequency oscillation having the buffet frequency was still included intermittently in the shock oscillation even when VG controlled the buffet. The rate of appearing the low-frequency oscillation increased with increasing both the interval between VGs and the angle of attack.
Keywords
Shock Wave
Wavelet Analysis
Shock Motion
Shock Oscillation
Source Grid
Note
This is an Accepted Manuscript of an article published by Springer
Published Date
2016-10-14
Publication Title
Experiments in Fluids
Volume
volume57
Issue
issue11
Publisher
Springer
Start Page
166
ISSN
0723-4864
NCID
AA10447762
Content Type
Journal Article
language
English
OAI-PMH Set
岡山大学
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isVersionOf https://doi.org/10.1007/s00348-016-2261-2