Title of article :
Computational fluid dynamics and electrostatic modeling of polymerization fluidized-bed reactors
Author/Authors :
Rokkam، نويسنده , , Ram G. and Fox، نويسنده , , Rodney O. and Muhle، نويسنده , , Michael E.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2010
Pages :
16
From page :
109
To page :
124
Abstract :
Electrostatics plays an important role in gas–solid polymerization fluidized-bed reactors. Agglomeration of polymer particles can occur due to either electrostatic and/or thermal effects, and can lead to reactor operability problems if not properly mitigated. In this work a first-principles electrostatic model is developed and coupled with a multi-fluid computational fluid dynamic (CFD) model to understand the effect of electrostatics on the bulk polymer, polymer fines, and catalyst particles. The multi-phase CFD model for gas–solid flow is based on the kinetic theory of granular flows and the frictional theory. The electrostatic model is developed based on a fixed, size-dependent charge for each type of particle (catalyst, polymer fines and polymer). The combined CFD model is first verified using simple test cases and then applied to a pilot-plant-scale polymerization fluidized-bed reactor. The multi-phase CFD model is applied to reproduce qualitative trends in particle segregation and entrainment due to electrostatic charges observed in experiments.
Keywords :
Euler–Euler model , Electrostatic modeling , fluidized-bed reactors , Segregation , Olefin polymerization , multi-fluid model
Journal title :
Powder Technology
Serial Year :
2010
Journal title :
Powder Technology
Record number :
1699701
Link To Document :
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