Cristin-resultat-ID: 1860251
Sist endret: 21. august 2022, 18:16
NVI-rapporteringsår: 2021
Resultat
Vitenskapelig artikkel
2021

Turbulent channel flow of generalized Newtonian fluids at a low Reynolds number

Bidragsytere:
  • Arturo Arosemena
  • Helge Ingolf Andersson og
  • Jannike Solsvik

Tidsskrift

Journal of Fluid Mechanics
ISSN 0022-1120
e-ISSN 1469-7645
NVI-nivå 2

Om resultatet

Vitenskapelig artikkel
Publiseringsår: 2021
Volum: 908
Artikkelnummer: A43
Open Access

Importkilder

Scopus-ID: 2-s2.0-85097961833

Beskrivelse Beskrivelse

Tittel

Turbulent channel flow of generalized Newtonian fluids at a low Reynolds number

Sammendrag

Several studies concerning the turbulent pipe flow of generalized Newtonian (GN) fluids may be found in the literature, but not for channel flow, although that has been extensively studied for other types of non-Newtonian fluids, such as those with viscoelastic effects. Direct numerical simulations corresponding to statistically converged turbulent channel flow of GN fluids at a low frictional Reynolds number have been performed. The shear-dependent viscosity is introduced through the Carreau fluid model, and results corresponding to the Newtonian fluid case are compared to those of moderate shear-thickening and shear-thinning fluid behaviour. The different statistics studied reveal that shear-dependent fluid rheology appears mainly to affect the flow within the inner layer region and with shear-thinning behaviour; suppressing near-wall structures such as quasi-streamwise vortices, inhibiting turbulence generating events, and leading to different drag reduction features. These include: enhancement of streamwise turbulence intensity and suppression of the other cross-sectional intensities, decrease of the Reynolds shear stress (leading to a lessening in turbulent production), decrease in energy redistribution between individual components of the Reynolds stress tensor through the velocity–pressure gradient term and overall increase in turbulence anisotropy at both small and large scales. In particular, it is noted that at the channel centre ‘rod-like’ turbulence states, a known low-Reynolds-number behaviour, are more clearly seen with shear-thinning fluid rheology.

Bidragsytere

Arturo Antonio Arosemena Pitty

Bidragsyterens navn vises på dette resultatet som Arturo Arosemena
  • Tilknyttet:
    Forfatter
    ved Institutt for kjemisk prosessteknologi ved Norges teknisk-naturvitenskapelige universitet

Helge Andersson

Bidragsyterens navn vises på dette resultatet som Helge Ingolf Andersson
  • Tilknyttet:
    Forfatter
    ved Institutt for energi- og prosessteknikk ved Norges teknisk-naturvitenskapelige universitet

Jannike Solsvik

  • Tilknyttet:
    Forfatter
    ved Institutt for kjemisk prosessteknologi ved Norges teknisk-naturvitenskapelige universitet
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