Computation of radiant heat transfer on a nonorthogonal mesh using the finite-volume method

EH Chui, GD Raithby - Numerical Heat Transfer, 1993 - Taylor & Francis
EH Chui, GD Raithby
Numerical Heat Transfer, 1993Taylor & Francis
The finite-volume method has been shown to effectively predict radiant exchange in
geometrically simple enclosures where the medium is gray, absorbing, emitting, and
scattering. Cartesian and circular cylindrical meshes have always been used. The present
article shows that the method applies equally well to geometrically complex enclosures
where nonorthogonal, boundary-fitted meshes are used. This development permits radiant
heat transfer to be computed on the same mesh employed to solve the equations of fluid …
Abstract
The finite-volume method has been shown to effectively predict radiant exchange in geometrically simple enclosures where the medium is gray, absorbing, emitting, and scattering. Cartesian and circular cylindrical meshes have always been used. The present article shows that the method applies equally well to geometrically complex enclosures where nonorthogonal, boundary-fitted meshes are used. This development permits radiant heat transfer to be computed on the same mesh employed to solve the equations of fluid motion.
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