Rotating packed beds (RPBs), as a type of process intensification technology, are promising to be employed as high-efficiency CO2 absorbers. However, the detailed understanding of the liquid flow in the RPB is still very limited. The complex and dense packing of the bed and the multiscale of the RPB make it very difficult to perform numerical simulations in detail, in particular for full 3D simulations. In this paper, a mesoscale 3D CFD modelling approach is proposed which can be used to investigate the liquid flow in both laboratory- and large-scale RPBs in detail and accuracy. A 3D representative elementary unit of the RPB has been built and validated with experimental observations, and then it is employed to investigate the gas–liquid fl...
The hydrodynamics within counter-current flow packed beds is of vital importance to provide insight ...
Rotating packed bed (RPB) system has applications in CO2 removal using chemical solvents which can r...
This work presents a meso-scale CFD methodology to describe the multiphase flow inside commercial st...
Rotating packed beds (RPBs) have been proposed as an emerging technology to be used for post-combust...
The rotating packed bed (RPB) is a promising reactor for CO2 capture with liquid amine because of it...
The rotating packed bed (RPB) is a promising advanced reactor used in industrial gas-liquid two-phas...
Packed bed reactors with counter-current, gas-liquid flows have been considered to be applicable in ...
Rotating packed bed (RPB) reactors, with strong centrifugal acceleration up to several hundred times...
ABSTRACT: In this research, the volume of fluid (VOF) method is used to study the hydrodynamics of r...
Rotating packed beds can reduce the equipment size and costs in solvent-based carbon capture. Howeve...
The application of rotating packed beds (RPBs) in solvent-based carbon capture processes, will great...
Application of process intensification (PI) technologies such as rotating packed beds (RPBs) to repl...
The hydrodynamics within counter-current flow packed beds is of vital importance to provide insight ...
Solvent-based post combustion CO2 capture is a promising technology for industrial application. Gas-...
Rotating packed beds (RPBs) are a compact and potentially more cost-effective alternative to packed ...
The hydrodynamics within counter-current flow packed beds is of vital importance to provide insight ...
Rotating packed bed (RPB) system has applications in CO2 removal using chemical solvents which can r...
This work presents a meso-scale CFD methodology to describe the multiphase flow inside commercial st...
Rotating packed beds (RPBs) have been proposed as an emerging technology to be used for post-combust...
The rotating packed bed (RPB) is a promising reactor for CO2 capture with liquid amine because of it...
The rotating packed bed (RPB) is a promising advanced reactor used in industrial gas-liquid two-phas...
Packed bed reactors with counter-current, gas-liquid flows have been considered to be applicable in ...
Rotating packed bed (RPB) reactors, with strong centrifugal acceleration up to several hundred times...
ABSTRACT: In this research, the volume of fluid (VOF) method is used to study the hydrodynamics of r...
Rotating packed beds can reduce the equipment size and costs in solvent-based carbon capture. Howeve...
The application of rotating packed beds (RPBs) in solvent-based carbon capture processes, will great...
Application of process intensification (PI) technologies such as rotating packed beds (RPBs) to repl...
The hydrodynamics within counter-current flow packed beds is of vital importance to provide insight ...
Solvent-based post combustion CO2 capture is a promising technology for industrial application. Gas-...
Rotating packed beds (RPBs) are a compact and potentially more cost-effective alternative to packed ...
The hydrodynamics within counter-current flow packed beds is of vital importance to provide insight ...
Rotating packed bed (RPB) system has applications in CO2 removal using chemical solvents which can r...
This work presents a meso-scale CFD methodology to describe the multiphase flow inside commercial st...