Modeling granular materials as compressible nonlinear fluids: Heat transfer boundary value problems
Mehrdad Massoudi and
Tran X. Phuoc
Mathematical Problems in Engineering, 2006, vol. 2006, 1-31
Abstract:
We discuss three boundary value problems in the flow and heat transfer analysis in flowing granular materials: (i) the flow down an inclined plane with radiation effects at the free surface; (ii) the natural convection flow between two heated vertical walls; (iii) the shearing motion between two horizontal flat plates with heat conduction. It is assumed that the material behaves like a continuum, similar to a compressible nonlinear fluid where the effects of density gradients are incorporated in the stress tensor. For a fully developed flow the equations are simplified to a system of three nonlinear ordinary differential equations. The equations are made dimensionless and a parametric study is performed where the effects of various dimensionless numbers representing the effects of heat conduction, viscous dissipation, radiation, and so forth are presented.
Date: 2006
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Persistent link: https://EconPapers.repec.org/RePEc:hin:jnlmpe:056046
DOI: 10.1155/MPE/2006/56046
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