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Results 1 to 25 of 305

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Hypothesis on deterministic turbulenceKACHANOV, Yury S.European journal of mechanics. B, Fluids. 2013, Vol 40, pp 30-33, issn 0997-7546, 4 p.Conference Paper

High Reynolds number effects in wall turbulenceMARUSIC, Ivan; MATHIS, Romain; HUTCHINS, Nicholas et al.International journal of heat and fluid flow. 2010, Vol 31, Num 3, pp 418-428, issn 0142-727X, 11 p.Article

Low-pass filtering effects of viscous sublayer on high Schmidt number mass transfer close to a solid wallHASEGAWA, Yosuke; KASAGI, Nobuhide.International journal of heat and fluid flow. 2009, Vol 30, Num 3, pp 525-533, issn 0142-727X, 9 p.Conference Paper

Observations of meandering superstructures in the roughness sublayer of a turbulent boundary layerMEJIA-ALVAREZ, R; WU, Y; CHRISTENSEN, K. T et al.International journal of heat and fluid flow. 2014, Vol 48, pp 43-51, issn 0142-727X, 9 p.Article

Experimental evidence of deterministic turbulenceBORODULIN, Vladimir I; KACHANOV, Yury S.European journal of mechanics. B, Fluids. 2013, Vol 40, pp 34-40, issn 0997-7546, 7 p.Conference Paper

A parametric study of adverse pressure gradient turbulent boundary layers : Eighth International Symposium on Engineering Turbulence Modelling and Measurements (ETMM8), Marseille, France, June 9-11, 2010MONTY, J. P; HARUN, Z; MARUSIC, I et al.International journal of heat and fluid flow. 2011, Vol 32, Num 3, pp 575-585, issn 0142-727X, 11 p.Article

Stochastic modelling of conjugate heat transfer in near-wall turbulencePOZORSKI, Jacek; MINIER, Jean-Pierre.International journal of heat and fluid flow. 2006, Vol 27, Num 5, pp 867-877, issn 0142-727X, 11 p.Conference Paper

On the near-wall vortical structures at moderate Reynolds numbersSCHLATTER, P; LI, Q; ÖRLÜ, R et al.European journal of mechanics. B, Fluids. 2014, Num 48, pp 75-93, issn 0997-7546, 19 p.Article

Simulation and validation of a spatially evolving turbulent boundary layer up to Reθ = 8300EITEL-AMOR, Georg; ÖRLÜ, Ramis; SCHLATTER, Philipp et al.International journal of heat and fluid flow. 2014, Vol 47, pp 57-69, issn 0142-727X, 13 p.Article

A new formulation for the streamwise turbulence intensity distribution in wall-bounded turbulent flowsHENRIK ALFREDSSON, P; ÖRLÜ, Ramis; SEGALINI, Antonio et al.European journal of mechanics. B, Fluids. 2012, Vol 36, pp 167-175, issn 0997-7546, 9 p.Article

The role of coherent structure interactions in the regeneration of wall turbulenceJIMENEZ, J; PINELLI, A.Fluid mechanics and its application. 1998, pp 155-158, isbn 0-7923-5115-0Conference Paper

Improved form of the K-ε model for wall turbulent shear flowsNAGANO, Y; HISHIDA, M.Journal of fluids engineering. 1987, Vol 109, Num 2, pp 156-160, issn 0098-2202Article

Bursts and subgrid-scale energy transfer in turbulent wall-bounded flowWESTBURY, P. S; SANDHAM, N. D; MORRISON, J. F et al.Fluid mechanics and its application. 1998, pp 23-26, isbn 0-7923-5115-0Conference Paper

A model for near-wall turbulenceHARITONIDIS, J. H.Physics of fluids. A, Fluid dynamics. 1989, Vol 1, Num 2, pp 302-306, issn 0899-8213Article

Identification and calculation of the universal asymptote for drag reduction by polymers in wall bounded turbulenceBENZI, Roberto; DE ANGELIS, Elisabetta; L'VOV, Victor S et al.Physical review letters. 2005, Vol 95, Num 19, pp 194502.1-194502.4, issn 0031-9007Article

Comment on the scaling of the near-wall streamwise variance peak in turbulent pipe flowsÖRLÜ, Ramis; ALFREDSSON, P. Henrik.Experiments in fluids. 2013, Vol 54, Num 1, issn 0723-4864, 541431.1-541431.5Article

Hairpin vortex organization in wall turbulenceADRIAN, Ronald J.Physics of fluids (1994). 2007, Vol 19, Num 4, issn 1070-6631, 041301.1-041301.16Article

The Analysis of Turbulence Intensity and Reynolds Shear Stress in Wall-Bounded Turbulent Flows at High Reynolds NumbersLIU, Hong-You; BO, Tian-Li; WANG, Guo-Hua et al.Boundary - layer meteorology. 2014, Vol 150, Num 1, pp 33-47, issn 0006-8314, 15 p.Article

Evolution of turbulence characteristics from straight to curved pipesNOORANI, A; EL KHOURY, G. K; SCHLATTER, P et al.International journal of heat and fluid flow. 2013, Vol 41, pp 16-26, issn 0142-727X, 11 p.Article

Direct Numerical Simulation of Turbulent Pipe Flow at Moderately High Reynolds NumbersEL KHOURY, George K; SCHLATTER, Philipp; NOORANI, Azad et al.Flow, turbulence and combustion. 2013, Vol 91, Num 3, pp 475-495, issn 1386-6184, 21 p.Article

Coherent structures in flow over hydraulic engineering surfacesADRIAN, Ronald J; FULTON, Ira A; MARUSIC, Ivan et al.Journal of hydraulic research. 2012, Vol 50, Num 5, pp 451-464, issn 0022-1686, 14 p.Article

Quantifying the interaction between large and small scales in wall-bounded turbulent flows: A note of cautionSCHLATTER, Philipp; RLÜ, Ramis Ö.Physics of fluids (1994). 2010, Vol 22, Num 5, issn 1070-6631, 051704.1-051704.4Article

Maximum drag reduction asymptotes and the cross-over to the Newtonian plugBENZI, R; DE ANGELIS, E; L'VOV, V. S et al.Journal of Fluid Mechanics. 2006, Vol 551, pp 185-195, issn 0022-1120, 11 p.Article

Energy cascade and spatial fluxes in wall turbulenceMARATI, N; CASCIOLA, C. M; PIVA, R et al.Journal of Fluid Mechanics. 2004, Vol 521, pp 191-215, issn 0022-1120, 25 p.Article

Suboptimal control for drag reduction via suppression of near-wall Reynolds shear stressFUKAGATA, Koji; KASAGI, Nobuhide.International journal of heat and fluid flow. 2004, Vol 25, Num 3, pp 341-350, issn 0142-727X, 10 p.Conference Paper

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