Title of article :
Computational model for prediction of particle degradation during dilute-phase pneumatic conveying: modeling of dilute-phase pneumatic conveying
Author/Authors :
Pierre Chapelle، نويسنده , , Nicholas Christakis، نويسنده , , Hadi Abou-Chakra، نويسنده , , Ian Bridle، نويسنده , , M.S.A Bradley، نويسنده , , Mayur Patel، نويسنده , , Mark Cross and Philip Schwarz، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2004
Pages :
19
From page :
31
To page :
49
Abstract :
A complete model of particle impact degradation during dilute-phase pneumatic conveying is developed, which combines a degradation model, based on the experimental determination of breakage matrices, and a physical model of solids and gas flow in the pipeline. The solids flow in a straight pipe element is represented by a model consisting of two zones: a strand-type flow zone immediately downstream of a bend, followed by a fully suspended flow region after dispersion of the strand. The breakage matrices constructed from data on 90° angle single-impact tests are shown to give a good representation of the degradation occurring in a pipe bend of 90° angle. Numerical results are presented for degradation of granulated sugar in a large scale pneumatic conveyor.
Keywords :
breakage matrices , Dilute-phase pneumatic conveying , Numerical simulations , impact degradation
Journal title :
Advanced Powder Technology
Serial Year :
2004
Journal title :
Advanced Powder Technology
Record number :
1247203
Link To Document :
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