Reducing the size of gas bubbles can significantly improve the performance of gas–solid fluidized reactors. However, such a control of bubbles is difficult to realize without measures that either use a lot of energy or deteriorate the fluidization behavior. In this paper, we present the results of discrete particle simulations of an electric-field enhanced fluidized bed, and compare these results to experimental data. The simulations show a significant effect on the size of bubbles, both with horizontal and vertical electric-fields applied. When the field strength is increased to values higher than those used in the experiments, the particles are found to form strings in the direction of the electric field. At very high field strengths, def...
A computational study has been carried out to assess the influence of pressure on the flow structure...
This work explores the effect of interparticle friction on the stability of a structured bubble flow...
An earlier developed Discrete Element Model (DEM) for simulating dense gas–solid two-phase flow has ...
Reducing the size of gas bubbles can significantly improve the performance of gas-solid fluidized re...
Reducing the size of gas bubbles can significantly improve the performance of gas-solid fluidized be...
The reduction of the size of bubbles can improve both selectivity and conversion in gas-solid fluidi...
The reduction of the size of bubbles can improve both selectivity and conver-sion in gas-solid fluid...
The generation of electrical charges, reported in gas-solid fluidized beds for over sixty years, can...
The mechanisms for controlling elutriation and bubbling effect in a fluidized bed are largely unexpl...
In many applications, such as bubble column reactors, electric field is employed to provide a greate...
Structuring fluidized beds can facilitate scale-up and increase conversion and selectivity by contro...
In several chemical and space industries, small bubbles are desired for efficient interaction betwee...
Polymers are often produced in pressurized fluidized beds. Large surface area and good mixing proper...
The study of bubble dynamics is precursory to the understanding of the more complex heat and mass tr...
This work reports the effects of gas extraction through flat vertical membranes on bubble dynamics i...
A computational study has been carried out to assess the influence of pressure on the flow structure...
This work explores the effect of interparticle friction on the stability of a structured bubble flow...
An earlier developed Discrete Element Model (DEM) for simulating dense gas–solid two-phase flow has ...
Reducing the size of gas bubbles can significantly improve the performance of gas-solid fluidized re...
Reducing the size of gas bubbles can significantly improve the performance of gas-solid fluidized be...
The reduction of the size of bubbles can improve both selectivity and conversion in gas-solid fluidi...
The reduction of the size of bubbles can improve both selectivity and conver-sion in gas-solid fluid...
The generation of electrical charges, reported in gas-solid fluidized beds for over sixty years, can...
The mechanisms for controlling elutriation and bubbling effect in a fluidized bed are largely unexpl...
In many applications, such as bubble column reactors, electric field is employed to provide a greate...
Structuring fluidized beds can facilitate scale-up and increase conversion and selectivity by contro...
In several chemical and space industries, small bubbles are desired for efficient interaction betwee...
Polymers are often produced in pressurized fluidized beds. Large surface area and good mixing proper...
The study of bubble dynamics is precursory to the understanding of the more complex heat and mass tr...
This work reports the effects of gas extraction through flat vertical membranes on bubble dynamics i...
A computational study has been carried out to assess the influence of pressure on the flow structure...
This work explores the effect of interparticle friction on the stability of a structured bubble flow...
An earlier developed Discrete Element Model (DEM) for simulating dense gas–solid two-phase flow has ...