\begin{document}$\lambda_{ci}$\end{document} vortex identification method, to study the mechanism of drag reduction caused by riblets. It is shown that the spatial scale of coherent structure in streamwise and wall-normal direction decrease over riblets and s-riblets to various degrees, the inclination angle between the mainstream and coherent structure also decreases, meaning that the wall-normal movement and upwash motion are suppressed over riblets and s-riblets. Results from the conditional sampling method demonstrate that the induction of ejection and sweep motions by hairpin vortex are inhibited over riblets and hence the exchange of energy and momentum and the self-sustaining mechanism in turbulence are influenced. Furthermore, at the same \begin{document}$Re_{\tau}$\end{document}, the spanwise spacing of low speed streaks turns wider with wall-normal position increasing. At the same \begin{document}$ y^{+} $\end{document}, a larger spacing is seen over riblets and s-riblets, implying that spanwise movement of the streaks is restrained and hence becomes more stable."> - 必威体育下载

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Citation:

    Li Shan, Jiang Nan, Yang Shao-Qiong
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    • Abstract views:8195
    • PDF Downloads:92
    • Cited By:0
    Publishing process
    • Received Date:19 October 2018
    • Accepted Date:16 February 2019
    • Available Online:23 March 2019
    • Published Online:05 April 2019

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