Simulation of Reacting, Moving Granular Assemblies of Thermally Thick Particles by Discrete Element Method/Computational Fluid Dynamics

Author:

Mahiques Enric Illana1,Brömmer Maximilian1,Wirtz Siegmar1,van Wachem Berend2,Scherer Viktor1

Affiliation:

1. Ruhr-University Bochum Institute of Energy Plant Technology Universitaetsstrasse 150 44780 Bochum Germany

2. Otto von Guericke University Magdeburg Institute of Process Engineering Universitaetsplatz 2 39106 Magdeburg Germany

Abstract

AbstractThe potential and limitations of the discrete element method (DEM) coupled with computational fluid mechanics (CFD) to simulate chemically reacting, moving granular material interacting with a fluid flow are summarized. A special focus is set on thermally thick particles, which requires to resolve the intraparticle transport and reaction processes. The aspect of complex particle shape is addressed, as shape may dominate the particle behavior in densely packed granular assemblies even more than the details of contact force laws. The fluid flow in the granular assembly is assumed to be a gas. The potential of DEM/CFD will be highlighted presenting three illustrative examples: a large‐scale lime shaft kiln with intermittent operation, an industrial‐size grate firing system for the incineration of municipal waste, and a small‐scale straw pellet stove.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Wiley

Subject

Industrial and Manufacturing Engineering,General Chemical Engineering,General Chemistry

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