Improvement of double-buffer problem in LES–RANS interface region by introducing an anisotropy-resolving subgrid-scale model
Author:
Publisher
Springer Science and Business Media LLC
Subject
Fluid Flow and Transfer Processes,General Engineering,Condensed Matter Physics,Computational Mechanics
Link
http://link.springer.com/article/10.1007/s00162-018-0453-5/fulltext.html
Reference37 articles.
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3. Lilly, D.K.: A proposed modification of the Germano subgrid-scale closure method. Phys. Fluids A 4, 633–635 (1992)
4. Zang, Y., Street, R.L., Koseff, J.R.: A dynamic mixed subgrid-scale model and its application to turbulent recirculating flows. Phys. Fluids A 5, 3186–3196 (1993)
5. Horiuti, K.: A new dynamic two-parameter mixed model for large-eddy simulation. Phys. Fluids 9, 3443–3464 (1997)
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2. Performance of a hybrid LES/RANS model combined with a wall function for predicting quite high Reynolds-number turbulent channel flows up to Reτ=6×107;Journal of Thermal Science and Technology;2020
3. Performance of an anisotropy-resolving hybrid LES/RANS model for high Reynolds-number turbulent channel flows up to Reτ = 2 × 105;Proceeding of THMT-18. Turbulence Heat and Mass Transfer 9 Proceedings of the Ninth International Symposium On Turbulence Heat and Mass Transfer;2018
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