Title of article :
Numerical simulation of particle motion in a gradient magnetically assisted fluidized bed
Author/Authors :
Zhenghua، نويسنده , , Hao and Xiang، نويسنده , , Li and Huilin، نويسنده , , Lu and Guodong، نويسنده , , Liu and Yurong، نويسنده , , He and Shuai، نويسنده , , Wang and Pengfei، نويسنده , , Xu، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2010
Pages :
10
From page :
555
To page :
564
Abstract :
Flow behavior of magnetizable particles is simulated in a two-dimensional gradient magnetically assisted bubbling fluidized bed. The motion of particles is simulated by discrete element method (DEM) with the consideration of external magnetic forces at a constant gradient magnetic field along bed height. The distributions of velocity and concentration of magnetizable particles are analyzed at the different magnetic field intensities. The simulations show a significant effect on the motion of particles with vertical magnetic-fields applied. When the magnetic field strength is increased to a value at which the fluidization of strings starts, the particles are found to form straight-chain aggregates in the direction of the magnetic field. At very high magnetic field strengths, defluidization is observed. Gas pressure drop of bed decreases with the increase of magnetic-flux densities. The granular temperature of particles increases, reaches a maximum, and then decreases with the increase of magnetic-flux density. Through the analysis of the motion of particles, it is concluded that the moderate strength magnetic field gives a high fluctuation of particles and distribute gas more evenly in the bed.
Keywords :
Discrete element method , Numerical simulation , Interaction , Magnetically fluidized bed
Journal title :
Powder Technology
Serial Year :
2010
Journal title :
Powder Technology
Record number :
1699877
Link To Document :
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