A viscoelastic turbulence model in a fully-developed drag reducing channel flow is improved, with turbulent eddies modelled under a k–ε representation, along with polymeric solutions described by the finitely extensible nonlinear elastic-Peterlin (FENE-P) constitutive model. The model performance is evaluated against a wide variety of direct numerical simulation data, described by different combinations of rheological parameters, which is able to predict all drag reduction (low, intermediate and high) regimes with good accuracy. Three main contributions are proposed: one with a simplified viscoelastic closure for the NLTij term (which accounts for the interactions between the fluctuating components of the conformation tensor and the velocit...
Abstract. A low Reynolds number k −ε model was developed for predicting drag reducing turbulent flow...
We investigate the phenomenon of drag reduction in a viscoelastic fluid model of dilute polymer solu...
The addition of small amounts of long chain polymer molecules to wall-bounded flows can lead to dram...
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...
It has been well-known for over six decades that the addition of minute amounts of long polymer chai...
A low-Reynolds-number k-ω model for Newtonian fluids has been developed to predict drag reduction of...
A low-Reynolds-number k-omega model for Newtonian fluids has been developed to predict drag reductio...
none6The drag reduction by polymers in turbulent flows was analyzed. The drag reduction, in a recent...
Direct numerical simulations (DNS) were carried out to investigate turbulent heat transfer in a chan...
A systematic study of drag reduction was performed on the basis of DNS of the FENE-P model. Simulati...
[[abstract]]With the damped eddy frequencies i.n turbulent floI', , the drag reduction of polymeric ...
We employ the full FENE-P model of the hydrodynamics of a dilute polymer solution to derive a theore...
It is well known that the drag in a turbulent flow of a polymer solution is significantly reduced co...
Abstract. A low Reynolds number k −ε model was developed for predicting drag reducing turbulent flow...
We investigate the phenomenon of drag reduction in a viscoelastic fluid model of dilute polymer solu...
The addition of small amounts of long chain polymer molecules to wall-bounded flows can lead to dram...
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...
It has been well-known for over six decades that the addition of minute amounts of long polymer chai...
A low-Reynolds-number k-ω model for Newtonian fluids has been developed to predict drag reduction of...
A low-Reynolds-number k-omega model for Newtonian fluids has been developed to predict drag reductio...
none6The drag reduction by polymers in turbulent flows was analyzed. The drag reduction, in a recent...
Direct numerical simulations (DNS) were carried out to investigate turbulent heat transfer in a chan...
A systematic study of drag reduction was performed on the basis of DNS of the FENE-P model. Simulati...
[[abstract]]With the damped eddy frequencies i.n turbulent floI', , the drag reduction of polymeric ...
We employ the full FENE-P model of the hydrodynamics of a dilute polymer solution to derive a theore...
It is well known that the drag in a turbulent flow of a polymer solution is significantly reduced co...
Abstract. A low Reynolds number k −ε model was developed for predicting drag reducing turbulent flow...
We investigate the phenomenon of drag reduction in a viscoelastic fluid model of dilute polymer solu...
The addition of small amounts of long chain polymer molecules to wall-bounded flows can lead to dram...