A low-Reynolds-number k-ω model for Newtonian fluids has been developed to predict drag reduction of viscoelastic fluids described by the FENE-P model. The model is an extension to viscoelastic fluids of the model for Newtonian fluids developed by Bredberg et al. (Int J Heat Fluid Flow 23:731-743, 2002). The performance of the model was assessed using results from direct numerical simulations for fully developed turbulent channel flow of FENE-P fluids. It should only be used for drag reductions of up to 50 % (low and intermediate drag reductions), because of the limiting assumption of turbulence isotropy leading to an under-prediction of k, but compares favourably with results from k-ε models in the literature based on turbulence isotropy. ...
A second-order closure is developed for predicting turbulent flows of viscoelastic fluids described ...
Abstract: A second order closure for predicting turbulent flows of viscoelastic fluids is proposed i...
We investigate the phenomenon of drag reduction in a viscoelastic fluid model of dilute polymer solu...
A low-Reynolds-number k-omega model for Newtonian fluids has been developed to predict drag reductio...
Abstract. A low Reynolds number k −ε model was developed for predicting drag reducing turbulent flow...
A viscoelastic turbulence model in a fully-developed drag reducing channel flow is improved, with tu...
An improved k-ε turbulence model for viscoelastic fluids is developed to predict turbulent flows in ...
The evolution of viscoelastic turbulent models, in the last years, has been significant due to the d...
The development of robust turbulent viscoelastic models to predict drag reducing behaviour of polyme...
Abstract. The new stress term in the time-average momentum equation of the modified generalised Newt...
Abstract: The performance of a newly developed low Reynolds number second order closure for viscoela...
Abstract. A recently developed viscoelastic k-epsilon turbulence model is used to analyze the reduct...
Direct numerical simulations (DNS) were carried out to investigate turbulent heat transfer in a chan...
Based on a generalised Newtonian fluid (GNF) model, modified to account for strain-thickening of the...
A systematic study of drag reduction was performed on the basis of DNS of the FENE-P model. Simulati...
A second-order closure is developed for predicting turbulent flows of viscoelastic fluids described ...
Abstract: A second order closure for predicting turbulent flows of viscoelastic fluids is proposed i...
We investigate the phenomenon of drag reduction in a viscoelastic fluid model of dilute polymer solu...
A low-Reynolds-number k-omega model for Newtonian fluids has been developed to predict drag reductio...
Abstract. A low Reynolds number k −ε model was developed for predicting drag reducing turbulent flow...
A viscoelastic turbulence model in a fully-developed drag reducing channel flow is improved, with tu...
An improved k-ε turbulence model for viscoelastic fluids is developed to predict turbulent flows in ...
The evolution of viscoelastic turbulent models, in the last years, has been significant due to the d...
The development of robust turbulent viscoelastic models to predict drag reducing behaviour of polyme...
Abstract. The new stress term in the time-average momentum equation of the modified generalised Newt...
Abstract: The performance of a newly developed low Reynolds number second order closure for viscoela...
Abstract. A recently developed viscoelastic k-epsilon turbulence model is used to analyze the reduct...
Direct numerical simulations (DNS) were carried out to investigate turbulent heat transfer in a chan...
Based on a generalised Newtonian fluid (GNF) model, modified to account for strain-thickening of the...
A systematic study of drag reduction was performed on the basis of DNS of the FENE-P model. Simulati...
A second-order closure is developed for predicting turbulent flows of viscoelastic fluids described ...
Abstract: A second order closure for predicting turbulent flows of viscoelastic fluids is proposed i...
We investigate the phenomenon of drag reduction in a viscoelastic fluid model of dilute polymer solu...