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Coal is complex and heterogeneous, with extremely variable properties.
Thermal development is slower and the effects of buoyancy and variable properties are both weaker.
Moisture evolution estimation for variable properties reproduces the experimental shape, but numerical effort is considerably increased.
The model is versatile and can be run with constant or variable properties.
Both thermally lumped and distributed formulations with constant and variable properties for the model are presented and studied.
The model allows variable properties and bubble radius changes, assuming diffusive mass fluxes to be properly described by Fick's law.
Similar(11)
Natural Convection simulation with Boussinesq approximation and variable property assumption have been performed.
Finally, the effect of variable property considerations are presented and critically analyzed.
Variable property effects are accounted for in a full-elliptic mathematical formulation.
An efficient method is presented whereby a particle can be followed along the variable property flowpath.
A variable property grain model was applied to account for the kinetic reaction of hydrogen sulfide with zinc oxide.
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