Vertical profiles of local pressure, horizontal profiles of net vertical solid mass flux, and residence time distributions (RTD) of the solid phase are experimentally assessed in the riser of a small scale cold Circulating Fluidized Bed of 9 m high having a square cross section of 1111 cm. Air (density 1.2 kg/m3, dynamic viscosity 1.8×10-5 Pa.s) and typical FCC particles (density 1400 kg/m3, mean diameter 70 mm) are used. The superficial gas velocity is kept constant at 7 m/s while the solid mass flux ranges from 46 to 133 kg/m2/s. The axial dispersion of the solid phase is found to decrease when increasing the solid mass flux. Simultaneously, 3D transient CFD simulations are performed to conclude on the usability of the eulerian-eulerian ...
Liquid phase residence time distribution (RTD) studies have been performed in conventional solid–liq...
International audienceThe solid phase behavior is studied in the upper zone of a circulating fluidiz...
Complex hydrodynamic behavior of circulating fluidized beds makes their scale-up very complicated. I...
A two dimensional computational fluid dynamics (CFD) model has been developed to simulate the hydrod...
Solids Residence Time Distribution (RTD) in Circulating Fluidized Bed (CFB) risers has received incr...
The residence time distribution (RTD) of particles in a gas-solid dense fluidized bed with a continu...
The hydrodynamics behavior of a bench-scale circulating fluidized bed (CFB) system has been analyzed...
This study was directed to the hydrodynamics of vertical risers, such as those used in catalytic cra...
This study was directed to the hydrodynamics of vertical risers, such as those used in catalytic cr...
The riser of a Circulating Fluidised Bed (CFB) is the key-component where gas-solid or gas-catalytic...
Almost all previous circulating fluidized bed hydrodynamic data reported in the literature have bee...
The hydrodynamics of a circulating fluidized bed (CFB) risers is highly complex and is strongly infl...
The present work focuses on a numerical investigation of the solids residence time distribution (RTD...
Hydrodynamic study of gas and solid flow in an internally circulating fluidized bed (ICFB) is made i...
Complex hydrodynamic behavior of circulating fluidized beds makes their scale-up very complicated. I...
Liquid phase residence time distribution (RTD) studies have been performed in conventional solid–liq...
International audienceThe solid phase behavior is studied in the upper zone of a circulating fluidiz...
Complex hydrodynamic behavior of circulating fluidized beds makes their scale-up very complicated. I...
A two dimensional computational fluid dynamics (CFD) model has been developed to simulate the hydrod...
Solids Residence Time Distribution (RTD) in Circulating Fluidized Bed (CFB) risers has received incr...
The residence time distribution (RTD) of particles in a gas-solid dense fluidized bed with a continu...
The hydrodynamics behavior of a bench-scale circulating fluidized bed (CFB) system has been analyzed...
This study was directed to the hydrodynamics of vertical risers, such as those used in catalytic cra...
This study was directed to the hydrodynamics of vertical risers, such as those used in catalytic cr...
The riser of a Circulating Fluidised Bed (CFB) is the key-component where gas-solid or gas-catalytic...
Almost all previous circulating fluidized bed hydrodynamic data reported in the literature have bee...
The hydrodynamics of a circulating fluidized bed (CFB) risers is highly complex and is strongly infl...
The present work focuses on a numerical investigation of the solids residence time distribution (RTD...
Hydrodynamic study of gas and solid flow in an internally circulating fluidized bed (ICFB) is made i...
Complex hydrodynamic behavior of circulating fluidized beds makes their scale-up very complicated. I...
Liquid phase residence time distribution (RTD) studies have been performed in conventional solid–liq...
International audienceThe solid phase behavior is studied in the upper zone of a circulating fluidiz...
Complex hydrodynamic behavior of circulating fluidized beds makes their scale-up very complicated. I...