論文

基本情報

氏名 岩野 耕治
氏名(カナ) イワノ コウジ
氏名(英語) Iwano Kouji
所属 工学部 機械システム工学科
職名 准教授
researchmap研究者コード 7000016503
researchmap機関 岡山理科大学

題名

Interscale transfer of turbulent energy in grid-generated turbulence with low Reynolds numbers

単著・共著の別

共著

著者

Muyang Wang, Takuya Yurikusa, Yasuhiko Sakai, Koji Iwano, Yasumasa Ito, Yi Zhou, Yuji Hattori

概要

Direct numerical simulations are performed for grid-generated turbulence with low Reynolds numbers to study the interscale transfer of turbulent energy. The Reynolds numbers based on the uniform velocity and grid mesh sizeM, are set to ReM=5000, 9000, and 15000. The results show that, for ReM=9000 and ReM=15000, the turbulent dissipation constant increases in the upstream region but it becomes nearly constant in the region of x/M>15. In contrast, for ReM=5000, it continues to increase and do not level off even in the downstream region. Scale-by-scale analysis using the Karman–Howarth–Monin–Hill equation indicates that, the non-linear transfer term balances with the dissipation term for all the cases. Instead, it is found that, in the downstream region of the ReM=5000 case, where the turbulent Reynolds number becomes Reλ<25, the contribution of the advection term varies depending on the streamwise positions. Further analysis for the one-point statistics indicates that, in such conditions, the coherences among the advection term, dissipation term, and diffusion term become small at small scales, while they are generally large in the other cases including the upstream region for ReM=5000. These indicate that energy cascade mechanism in the downstream region for ReM=5000 is different from the cases of 30<Reλ<60, even though both of them are generally considered as small Reλ, and it is caused by the increase of the dissipation scale range appearing in the transition period to the final decay.

発表雑誌等の名称

International Journal of Heat and Fluid Flow

出版者

97

開始ページ

109031

終了ページ

109031

発行又は発表の年月

2022/10

査読の有無

無し

招待の有無

無し

記述言語

掲載種別

ISSN

ID:DOI

ID:NAID(CiNiiのID)

https://doi.org/10.1016/j.ijheatfluidflow.2022.109031

ID:PMID

URL

JGlobalID

arXiv ID

ORCIDのPut Code

DBLP ID