We simulated a lab-scale cold-flow spouted bed through computational fluid dynamics (CFD), coupled with the discrete element method (DEM) for the solid phase, using a commercial CFD program, ANSYS FLUENT 18.0. To limit the computational expense, we tested both a simplified pseudo-2D geometry and a complete 3D geometry. We found that the Haider and Levenspiel drag model is suitable for the pseudo-2D geometry; however, this model does not correctly predict fluidisation in the 3D geometry. Conversely, the Gidaspow drag model behaves accurately in the 3D geometry but overestimates the motion of particles in the pseudo-2D geometry. We studied several single-solid and binary mixtures to assess the reproducibility of segregation phenomena. The pse...
This work focuses on a comparison between three different numerical CFD methods, namely Euler–Euler,...
The development of robust mathematical models could provide the necessary tools for a more rapid, ef...
Spout fluidized beds are often utilized for the gas–solid operations involving physical and/or chemi...
From experiments, the influence of the physical characteristics of different binary mixtures of soli...
A spouted bed was simulated through two Computational Fluid Dynamic models: CFD-TFM and CFD-DEM. The...
In this work, experimental and numerical simulation methods are used to study the gas-solid two-phas...
Since the invention of the spouted bed technology by Mathur and Gishler (1955), different kinds of a...
The paper presents a computational study of the gas-solid flow in a three- dimensional spouted bed b...
In this investigation a prismatic spouted bed apparatus with two horizontal gas inlets was modeled b...
The spouted bed has been used in drying, granulation, catalytic polymerization, residue treatment an...
The mixing and segregation behaviour of binary solid mixtures has been extensively studied through v...
Recently the importance of spouted bed technology has significantly increased in the context of dryi...
The development of robust mathematical models could provide the necessary tools for a more rapid, ef...
This work focuses on a comparison between three different numerical CFD methods, namely Euler–Euler,...
The development of robust mathematical models could provide the necessary tools for a more rapid, ef...
Spout fluidized beds are often utilized for the gas–solid operations involving physical and/or chemi...
From experiments, the influence of the physical characteristics of different binary mixtures of soli...
A spouted bed was simulated through two Computational Fluid Dynamic models: CFD-TFM and CFD-DEM. The...
In this work, experimental and numerical simulation methods are used to study the gas-solid two-phas...
Since the invention of the spouted bed technology by Mathur and Gishler (1955), different kinds of a...
The paper presents a computational study of the gas-solid flow in a three- dimensional spouted bed b...
In this investigation a prismatic spouted bed apparatus with two horizontal gas inlets was modeled b...
The spouted bed has been used in drying, granulation, catalytic polymerization, residue treatment an...
The mixing and segregation behaviour of binary solid mixtures has been extensively studied through v...
Recently the importance of spouted bed technology has significantly increased in the context of dryi...
The development of robust mathematical models could provide the necessary tools for a more rapid, ef...
This work focuses on a comparison between three different numerical CFD methods, namely Euler–Euler,...
The development of robust mathematical models could provide the necessary tools for a more rapid, ef...
Spout fluidized beds are often utilized for the gas–solid operations involving physical and/or chemi...