Magnetic resonance imaging (MRI) was used to measure directly gas velocity and gas velocity distribution in the freeboard region of a fluidized bed (52 mm dia.) under bubbling fluidization and just below minimum fluidization. The bed consisted of poppy seed particles 1.1 mm in diameter and was fluidized using SF6 gas at 7.5 barg for MRI purposes. In the system, bubbles approximately 20 mm in diameter rose through the centre of the bed. In the case of bubbling fluidization, time-averaged velocity maps at different vertical positions in the freeboard showed downward moving gas in the centre of the bed and upward moving gas near the walls for this particular bed. However, below minimum fluidization conditions, the profiles of gas velocity in t...
We used a permanent-magnet magnetic resonance imaging (MRI) system to estimate the integral, spatial...
Nuclear magnetic resonance (NMR) experiments are described for gas-fluidized granular beds, which ar...
This work reports the effects of gas extraction through flat vertical membranes on bubble dynamics i...
Snapshots of particle concentration and velocity fields in bubbling gas–solid fluidized beds were ac...
Relative flow between granular material and gas can create phenomena in which particles behave like ...
Magnetic resonance imaging is used to generate snapshots of particle concentration and velocity fiel...
Real-time magnetic resonance imaging was used to study the different flow regimes which occur in a f...
Snapshots of particle concentration and velocity fields in bubbling gas–solid fluidized beds were ac...
Magnetic resonance (MR) imaging techniques have been used to study gas phase dynamics during co-curr...
© 2017 Elsevier Ltd A narrow column, gas-solid fluidized bed was studied using ultrashort echo time ...
Rapid magnetic resonance imaging (MRI) was used to visualize and quantify the interaction of two bub...
This thesis describes the first application of ultra-fast magnetic resonance imaging (MRI) towards t...
A 3-D cylindrical discrete element model with computational fluid dynamics (DEM-CFD) was used to inv...
This dissertation presents experimental studies of granular media using Nuclear Magnetic Resonance (...
Three magnetic resonance techniques were implemented to study solids mixing in a fluidized bed. Ultr...
We used a permanent-magnet magnetic resonance imaging (MRI) system to estimate the integral, spatial...
Nuclear magnetic resonance (NMR) experiments are described for gas-fluidized granular beds, which ar...
This work reports the effects of gas extraction through flat vertical membranes on bubble dynamics i...
Snapshots of particle concentration and velocity fields in bubbling gas–solid fluidized beds were ac...
Relative flow between granular material and gas can create phenomena in which particles behave like ...
Magnetic resonance imaging is used to generate snapshots of particle concentration and velocity fiel...
Real-time magnetic resonance imaging was used to study the different flow regimes which occur in a f...
Snapshots of particle concentration and velocity fields in bubbling gas–solid fluidized beds were ac...
Magnetic resonance (MR) imaging techniques have been used to study gas phase dynamics during co-curr...
© 2017 Elsevier Ltd A narrow column, gas-solid fluidized bed was studied using ultrashort echo time ...
Rapid magnetic resonance imaging (MRI) was used to visualize and quantify the interaction of two bub...
This thesis describes the first application of ultra-fast magnetic resonance imaging (MRI) towards t...
A 3-D cylindrical discrete element model with computational fluid dynamics (DEM-CFD) was used to inv...
This dissertation presents experimental studies of granular media using Nuclear Magnetic Resonance (...
Three magnetic resonance techniques were implemented to study solids mixing in a fluidized bed. Ultr...
We used a permanent-magnet magnetic resonance imaging (MRI) system to estimate the integral, spatial...
Nuclear magnetic resonance (NMR) experiments are described for gas-fluidized granular beds, which ar...
This work reports the effects of gas extraction through flat vertical membranes on bubble dynamics i...