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Direct numerical simulations of turbulent channel flow over ratchet roughness
被引:0
|作者:
Angela Busse
Oleksandr Zhdanov
机构:
[1] University of Glasgow,James Watt School of Engineering
来源:
关键词:
Turbulence;
Channel flow;
Rough walls;
Direct numerical simulation;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
The influence of the orientation of ratchet-type rough surfaces on their fluid dynamic roughness effect is investigated using direct numerical simulations of turbulent channel flow at Reτ=395\documentclass[12pt]{minimal}
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\begin{document}$$Re_{\tau }=395$$\end{document}. The ratchet length-to-height ratio is varied from ℓ/k=2\documentclass[12pt]{minimal}
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\begin{document}$$\ell /k=2$$\end{document} to 16 for a fixed ratchet height of k/δ=0.1\documentclass[12pt]{minimal}
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\begin{document}$$k/\delta =0.1$$\end{document} where δ\documentclass[12pt]{minimal}
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\begin{document}$$\delta$$\end{document} is the mean channel half-height. The results show that both roughness function and mean flow and turbulence statistics strongly depend on the ratchet orientation. Existing empirical formulae, which estimate the roughness function ΔU+\documentclass[12pt]{minimal}
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\begin{document}$$\Delta U^+$$\end{document} or the equivalent sand-grain roughness ks\documentclass[12pt]{minimal}
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\begin{document}$$k_s$$\end{document} based on surface-slope related parameters such as the effective slope or the Sigal-Danberg parameter, fail to accurately predict the differences between ratchet surfaces with high windward slopes and ratchet surfaces with high leeward slopes.
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页码:1195 / 1213
页数:18
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