Engineering flows are generally characterised by complex strain field and turbulence structure arising from a combination of shear, curvature, separation and recirculation etc. Under such flow conditions, transport by turbulent velocity fluctuations can make a significant contribution to the transport of momentum, heat and mass. This thesis is focussed on turbulence modelling based on the scalar eddy-viscosity concept, as well as on more elaborate second-order-moment closures, in which the modelled transport equations for the individual Reynolds stresses are solved for. The aim is to numerically simulate the behaviour of turbulent flows relevant to industrial wall-cooling applications, such as cooling of the blades in a gas turbine or of th...
Numerical simulation of fluid flow and heat transfer for high rotation and buoyancy numbers flow in ...
Abstract: In order to make Durbin’s υ2-f model robust and applicable for calculation of complex turb...
Since last few decades, the Large-Eddy Simulation (LES) technique has been widely adapted from acade...
Engineering flows are generally characterised by complex strain field and turbulence structure arisi...
At present it is widely accepted that there is no universal turbulence model, i.e. no turbulence mod...
Computational fluid dynamics is a cornerstone in gas turbine engine design. It is used to optimize s...
To enhance the performance of gas turbine engines, high top-cycle temperatures are desired. However,...
Computational fluid dynamics is a cornerstone in gas turbine engine design. It is used to optimize s...
Abstract--- In this paper we present some of the most practical problems of convective heat transpor...
The paper summarizes current strategies for computing heat transfer coefficients in complex turbulen...
The study is concerned with exploring the ability of eddy-viscosity based RANS models to compute con...
Direct numerical simulation techniques are used to study wall turbulence and turbulent dispersion.Tu...
This paper presents a novel methodology for improving eddy viscosity models in predicting wall-bound...
This paper presents a novel methodology for improving eddy viscosity models in predicting wall-bound...
Numerical simulation of fluid flow and heat transfer for high rotation and buoyancy numbers flow in ...
Numerical simulation of fluid flow and heat transfer for high rotation and buoyancy numbers flow in ...
Abstract: In order to make Durbin’s υ2-f model robust and applicable for calculation of complex turb...
Since last few decades, the Large-Eddy Simulation (LES) technique has been widely adapted from acade...
Engineering flows are generally characterised by complex strain field and turbulence structure arisi...
At present it is widely accepted that there is no universal turbulence model, i.e. no turbulence mod...
Computational fluid dynamics is a cornerstone in gas turbine engine design. It is used to optimize s...
To enhance the performance of gas turbine engines, high top-cycle temperatures are desired. However,...
Computational fluid dynamics is a cornerstone in gas turbine engine design. It is used to optimize s...
Abstract--- In this paper we present some of the most practical problems of convective heat transpor...
The paper summarizes current strategies for computing heat transfer coefficients in complex turbulen...
The study is concerned with exploring the ability of eddy-viscosity based RANS models to compute con...
Direct numerical simulation techniques are used to study wall turbulence and turbulent dispersion.Tu...
This paper presents a novel methodology for improving eddy viscosity models in predicting wall-bound...
This paper presents a novel methodology for improving eddy viscosity models in predicting wall-bound...
Numerical simulation of fluid flow and heat transfer for high rotation and buoyancy numbers flow in ...
Numerical simulation of fluid flow and heat transfer for high rotation and buoyancy numbers flow in ...
Abstract: In order to make Durbin’s υ2-f model robust and applicable for calculation of complex turb...
Since last few decades, the Large-Eddy Simulation (LES) technique has been widely adapted from acade...