The interaction force between fluid and solid phases is studied for both steady and unsteady flow situations. As a model, solid particles are assumed to be spherical and are distributed in regular arrays. For steady flows, a numerical method is used to calculate the interaction force for Reynolds number up to about 300. For unsteady flows, an analytical method is used.To minimize errors due to artificial diffusions, a third-order accurate numerical scheme is developed for the primitive variable form of the Navier-Stokes equations.The full Navier-Stokes equations are solved numerically for steady flows past regular arrays of cylinders and spheres. The interaction force is compared with both Ergun's (1952) and Richardson-Zaki's (1954) empiric...
Gas-solid fluidized beds are almost always polydisperse in industrial application. However, to descr...
Flowing solid-liquid suspensions are abundant in natural and engineered systems. In general, solid-l...
Liquid-solid systems are frequently encountered in industrial processes and it is broadly recognised...
The interaction force between fluid and solid phases is studied for both steady and unsteady flow si...
Currently, the two most widespread methods for modelling the particulate phase in numerical simulati...
The variation of the drag (CD) and lift coefficients (CL) of two fixed solid spherical particles pla...
Collective behavior and self-organization are ubiquitous mechanisms in nature. From animate creature...
The overall purpose with this work is to study the flow past particles and droplets using numerical ...
Hydrodynamic interactions between two identical solid spheres are investigated numerically using a f...
The interaction among two spheres in tandem formation are studied for a Reynolds number of 300 using...
Numerical values are provided which enable the drag force on the reference spherical fluid or solid ...
International audienceThe numerical simulation of interaction between structures and two-phase flows...
The study reported in this thesis is concerned with the granular dynamics of gas-solid two-phase flo...
Particulate flows are found in many practical applications from geophysical flows (pyroclastic flow,...
The hydrodynamic forces acting on a solid particle in a viscous, incompressible fluid medium at low ...
Gas-solid fluidized beds are almost always polydisperse in industrial application. However, to descr...
Flowing solid-liquid suspensions are abundant in natural and engineered systems. In general, solid-l...
Liquid-solid systems are frequently encountered in industrial processes and it is broadly recognised...
The interaction force between fluid and solid phases is studied for both steady and unsteady flow si...
Currently, the two most widespread methods for modelling the particulate phase in numerical simulati...
The variation of the drag (CD) and lift coefficients (CL) of two fixed solid spherical particles pla...
Collective behavior and self-organization are ubiquitous mechanisms in nature. From animate creature...
The overall purpose with this work is to study the flow past particles and droplets using numerical ...
Hydrodynamic interactions between two identical solid spheres are investigated numerically using a f...
The interaction among two spheres in tandem formation are studied for a Reynolds number of 300 using...
Numerical values are provided which enable the drag force on the reference spherical fluid or solid ...
International audienceThe numerical simulation of interaction between structures and two-phase flows...
The study reported in this thesis is concerned with the granular dynamics of gas-solid two-phase flo...
Particulate flows are found in many practical applications from geophysical flows (pyroclastic flow,...
The hydrodynamic forces acting on a solid particle in a viscous, incompressible fluid medium at low ...
Gas-solid fluidized beds are almost always polydisperse in industrial application. However, to descr...
Flowing solid-liquid suspensions are abundant in natural and engineered systems. In general, solid-l...
Liquid-solid systems are frequently encountered in industrial processes and it is broadly recognised...