Gas-solid flows are abundant both in nature and in industrial applications, therefore the ability to accurately predict their behaviour is of crucial importance. The main goal of the research project presented in this thesis was to develop a methodology for eff cient true direct numerical simulations (DNS) of turbulent flows with solid particles. True DNS (TDNS) in this case implies that not only all the spatial and temporal scales of the f ow f eld are directly computed, but also that the appropriate boundary conditions are imposed on surfaces of the particles allowing for the boundary layer development. The designed approach is strongly based on the ideas of the Immersed Boundary Method (IBM). In this technique, two separate computatio...
Dense gas-solid flows are encountered in many different processes in the chemical industry, electric...
This thesis describes a study on the behaviour of small solid particles in a numerically simulated t...
AbstractThis paper describes a complete framework to predict the behaviour of interacting non-spheri...
In this paper a simulation model is presented for the Direct Numerical Simulation (DNS) of complex m...
In this paper a simulation model is presented for the Direct Numerical Simulation (DNS) of complex m...
In this paper a simulation model is presented for the Direct Numerical Simulation (DNS) of complex m...
Gas-solid flows are commonly encountered in Nature and in several industrial applications. Emerging ...
In this paper a simulation model is presented for the Direct Numerical Simulation (DNS) of complex m...
In this paper a simulation model is presented for the Direct Numerical Simulation (DNS) of complex m...
Gas-solid flows are commonly encountered in Nature and in several industrial applications. Emerging ...
In this paper a simulation model is presented for the Direct Numerical Simulation (DNS) of complex m...
In this paper a simulation model is presented for the Direct Numerical Simulation (DNS) of complex m...
In this paper a simulation model is presented for the Direct Numerical Simulation (DNS) of complex m...
In this paper a simulation model is presented for the Direct Numerical Simulation (DNS) of complex m...
In this paper a simulation model is presented for the Direct Numerical Simulation (DNS) of complex m...
Dense gas-solid flows are encountered in many different processes in the chemical industry, electric...
This thesis describes a study on the behaviour of small solid particles in a numerically simulated t...
AbstractThis paper describes a complete framework to predict the behaviour of interacting non-spheri...
In this paper a simulation model is presented for the Direct Numerical Simulation (DNS) of complex m...
In this paper a simulation model is presented for the Direct Numerical Simulation (DNS) of complex m...
In this paper a simulation model is presented for the Direct Numerical Simulation (DNS) of complex m...
Gas-solid flows are commonly encountered in Nature and in several industrial applications. Emerging ...
In this paper a simulation model is presented for the Direct Numerical Simulation (DNS) of complex m...
In this paper a simulation model is presented for the Direct Numerical Simulation (DNS) of complex m...
Gas-solid flows are commonly encountered in Nature and in several industrial applications. Emerging ...
In this paper a simulation model is presented for the Direct Numerical Simulation (DNS) of complex m...
In this paper a simulation model is presented for the Direct Numerical Simulation (DNS) of complex m...
In this paper a simulation model is presented for the Direct Numerical Simulation (DNS) of complex m...
In this paper a simulation model is presented for the Direct Numerical Simulation (DNS) of complex m...
In this paper a simulation model is presented for the Direct Numerical Simulation (DNS) of complex m...
Dense gas-solid flows are encountered in many different processes in the chemical industry, electric...
This thesis describes a study on the behaviour of small solid particles in a numerically simulated t...
AbstractThis paper describes a complete framework to predict the behaviour of interacting non-spheri...