A comparison of reactive flows on two distinct scales is presented here (i) Particle resolved direct numerical simulation (PR-DNS), and (ii) 1D packed bed model. The PR-DNS geometry is meshed with polyhedral elements both inside and outside the particle to directly resolve the phenomena of intra particle diffusion and external heat and mass transfer. In contrast, the 1D packed bed model incorporates appropriate closure models to compare against the PR-DNS solutions at a computational cost several magnitudes less. Simulations are performed for endothermic steam methane reforming reactions (SMR) over a range of inlet temperatures. The comparison of the results between the two approaches shows that the 1D model can adequately replicate the PR-...
This paper addresses the experimental demonstration and model validation of chemical looping reformi...
This work presents a comparative study of reactive flow in a realistically packed array of cylindric...
AbstractThis paper addresses the experimental demonstration and model validation of chemical looping...
A comparison of reactive flows on two distinct scales is presented here (i) Particle resolved direct...
Packed bed reactors are broadly used in industry and are under consideration for novel reactor conc...
Particle-resolved direct numerical simulation (PR-DNS) is known to provide an accurate detailed insi...
Particle-resolved direct numerical simulation (PR-DNS) is known to provide an accurate detailed insi...
The present thesis probes the heat and mass transfer phenomena in packed bed of particles. The gap i...
The work presents a comparison of catalytic gas-solid reactions in a packed bed as simulated on two ...
The work presents a comparison of catalytic gas-solid reactions in a packed bed as simulated on two ...
The work presents a comparison of catalytic gas-solid reactions in a packed bed as simulated on two ...
A multi-scale model is presented for a steam methane reforming reactor. The reactor is a typical top...
Chemical looping reforming (CLR) is an emerging hydrogen/syngas production technology, integrated wi...
This work investigates the influence of porous catalyst structural parameters on a packed bed reacto...
This paper addresses the experimental demonstration and model validation of chemical looping reformi...
This work presents a comparative study of reactive flow in a realistically packed array of cylindric...
AbstractThis paper addresses the experimental demonstration and model validation of chemical looping...
A comparison of reactive flows on two distinct scales is presented here (i) Particle resolved direct...
Packed bed reactors are broadly used in industry and are under consideration for novel reactor conc...
Particle-resolved direct numerical simulation (PR-DNS) is known to provide an accurate detailed insi...
Particle-resolved direct numerical simulation (PR-DNS) is known to provide an accurate detailed insi...
The present thesis probes the heat and mass transfer phenomena in packed bed of particles. The gap i...
The work presents a comparison of catalytic gas-solid reactions in a packed bed as simulated on two ...
The work presents a comparison of catalytic gas-solid reactions in a packed bed as simulated on two ...
The work presents a comparison of catalytic gas-solid reactions in a packed bed as simulated on two ...
A multi-scale model is presented for a steam methane reforming reactor. The reactor is a typical top...
Chemical looping reforming (CLR) is an emerging hydrogen/syngas production technology, integrated wi...
This work investigates the influence of porous catalyst structural parameters on a packed bed reacto...
This paper addresses the experimental demonstration and model validation of chemical looping reformi...
This work presents a comparative study of reactive flow in a realistically packed array of cylindric...
AbstractThis paper addresses the experimental demonstration and model validation of chemical looping...