Modeling of gas-solid, heterogeneously catalytic, diameter-transformed fluidized bed (DTFB) reactors is intrinsically complex and requires considering the variation of material properties and operating conditions, because of reactions and/or diameter transformation. The EMMS-matrix drag model, which correlates both operating conditions and local parameters, has been applied in computational fluid dynamics (CFD) simulation of such complex reactors by simplifying the macroscale operating conditions with one set of constant parameters. However, a complete scheme has not been reported that covers a wide range of datasets for a DTFB reactor with complex reactions. To this end, the artificial neural network (ANN), which enables exploring a multiv...
Artificial Neural Networks (ANNs) have become a popular tool for identification and control of nonli...
The Computational Fluid Dynamics - Discrete Element Method (CFD-DEM) method is extended by coupling ...
Different types of packing materials are used to increase gas-liquid contact area in packed columns....
Modeling of gas-solid, heterogeneously catalytic, diameter-transformed fluidized bed (DTFB) reactors...
The previous sub-grid, energy-minimization multi-scale (EMMS) drag models were all established at ce...
The complex flow patterns induced in fluidized bed catalytic reactors and the competing parameters a...
Circulating fluidized bed (CFB)-based co-pyrolysis is a promising technology for producing synthetic...
In this work, an artificial neural network approach is used to capture the reactor characteristics i...
Mass transfer efficiency was modeled by developing a computational fluid dynamic based artificial ne...
The minimum fluidization velocity (Umf) and maximum pressure drop (ΔPmax) of a gas-solid fluidized b...
The hydrodynamic behavior of gas–solid flow is investigated in a 2-D bubbling fluidized bed reactor ...
This article corresponds to chapter 5 of Ph.D: Experimental and mathematical modelling of biowaste g...
A neural network was used to model experimental fluidisation data - bubble size and velocity - from...
To consider the critical effect of mesoscale structure on the drag coefficient, this paper presents ...
Surrogate modeling is an efficient alternative for computation-intensive process simulations in engi...
Artificial Neural Networks (ANNs) have become a popular tool for identification and control of nonli...
The Computational Fluid Dynamics - Discrete Element Method (CFD-DEM) method is extended by coupling ...
Different types of packing materials are used to increase gas-liquid contact area in packed columns....
Modeling of gas-solid, heterogeneously catalytic, diameter-transformed fluidized bed (DTFB) reactors...
The previous sub-grid, energy-minimization multi-scale (EMMS) drag models were all established at ce...
The complex flow patterns induced in fluidized bed catalytic reactors and the competing parameters a...
Circulating fluidized bed (CFB)-based co-pyrolysis is a promising technology for producing synthetic...
In this work, an artificial neural network approach is used to capture the reactor characteristics i...
Mass transfer efficiency was modeled by developing a computational fluid dynamic based artificial ne...
The minimum fluidization velocity (Umf) and maximum pressure drop (ΔPmax) of a gas-solid fluidized b...
The hydrodynamic behavior of gas–solid flow is investigated in a 2-D bubbling fluidized bed reactor ...
This article corresponds to chapter 5 of Ph.D: Experimental and mathematical modelling of biowaste g...
A neural network was used to model experimental fluidisation data - bubble size and velocity - from...
To consider the critical effect of mesoscale structure on the drag coefficient, this paper presents ...
Surrogate modeling is an efficient alternative for computation-intensive process simulations in engi...
Artificial Neural Networks (ANNs) have become a popular tool for identification and control of nonli...
The Computational Fluid Dynamics - Discrete Element Method (CFD-DEM) method is extended by coupling ...
Different types of packing materials are used to increase gas-liquid contact area in packed columns....