Two-fluid modeling of the hydrodynamics of industrial-scale gas-fluidized beds proves a long-standing challenge for both engineers and scientists. In this study, we suggest a simple method to modify currently available drag correlations to allow for the effect of unresolved sub-grid scale structures, by assuming that the particles inside each computational cell are presented in the form of a two-phase structure. This method would thus make it possible to simulate the hydrodynamics of industrial-scale bubbling fluidized beds of Geldart B and D particles with a coarse computational mesh. It is shown that with the proposed modification of the drag force correlation, the experimentally measured bed expansion characteristics of industrial-scale ...
Bubble size distribution resulted from bubble coalescence and breakup has significant effects on the...
We have investigated the effect of cohesion and drag models on the bed hydrodynamics of Geldart A pa...
The hydrodynamic behavior of gas–solid flow is investigated in a 2-D bubbling fluidized bed reactor ...
Two-fluid modeling of the hydrodynamics of industrial-scale gas-fluidized beds proves a long-standin...
In this study, a new method was developed to simulate the flow characteristics of Geldart A particle...
Gas-fluidization of Geldart A particles was simulated for a domain of lab-scale dimensions. Hydrodyn...
A series of fine-grid simulation with two-fluid model (TFM) is performed for bubbling, turbulent and...
In this paper, an Eulerian–Lagrangian approach, in which the gas flow is solved by the volume-averag...
A bubble-based drag model at the local-grid level is proposed to simulate gas-solid flows in bubblin...
Granular option enabled two-fluid model coupled with different homogeneous and heterogeneous drag co...
In the current work, a numerical parametric study was performed in order to model the fluid mechanic...
In this work the influences of solid viscosity and the way to scale-down traditional drag models on ...
A computational study of the influence of particle size distribution on bubbling fluidized beds is p...
In this work, a new drag model for TFM simulation in gas solid bubbling fluidized beds was proposed,...
As an important and essential physical property, particle shape affects fluidization characteristics...
Bubble size distribution resulted from bubble coalescence and breakup has significant effects on the...
We have investigated the effect of cohesion and drag models on the bed hydrodynamics of Geldart A pa...
The hydrodynamic behavior of gas–solid flow is investigated in a 2-D bubbling fluidized bed reactor ...
Two-fluid modeling of the hydrodynamics of industrial-scale gas-fluidized beds proves a long-standin...
In this study, a new method was developed to simulate the flow characteristics of Geldart A particle...
Gas-fluidization of Geldart A particles was simulated for a domain of lab-scale dimensions. Hydrodyn...
A series of fine-grid simulation with two-fluid model (TFM) is performed for bubbling, turbulent and...
In this paper, an Eulerian–Lagrangian approach, in which the gas flow is solved by the volume-averag...
A bubble-based drag model at the local-grid level is proposed to simulate gas-solid flows in bubblin...
Granular option enabled two-fluid model coupled with different homogeneous and heterogeneous drag co...
In the current work, a numerical parametric study was performed in order to model the fluid mechanic...
In this work the influences of solid viscosity and the way to scale-down traditional drag models on ...
A computational study of the influence of particle size distribution on bubbling fluidized beds is p...
In this work, a new drag model for TFM simulation in gas solid bubbling fluidized beds was proposed,...
As an important and essential physical property, particle shape affects fluidization characteristics...
Bubble size distribution resulted from bubble coalescence and breakup has significant effects on the...
We have investigated the effect of cohesion and drag models on the bed hydrodynamics of Geldart A pa...
The hydrodynamic behavior of gas–solid flow is investigated in a 2-D bubbling fluidized bed reactor ...