Contact melting of a three-dimensional phase change material on a flat substrate

Autor/a

De Decker, Michelle M.

Myers, T.G.

Otros/as autores/as

Centre de Recerca Matemàtica

Fecha de publicación

2011



Resumen

In this paper a model is developed to describe the three dimensional contact melting process of a cuboid on a heated surface. The mathematical description involves two heat equations (one in the solid and one in the melt), the Navier-Stokes equations for the flow in the melt, a Stefan condition at the phase change interface and a force balance between the weight of the solid and the countering pressure in the melt. In the solid an optimised heat balance integral method is used to approximate the temperature. In the liquid the small aspect ratio allows the Navier-Stokes and heat equations to be simplified considerably so that the liquid pressure may be determined using an igenfunction expansion and finally the problem is reduced to solving three first order ordinary differential equations. Results are presented showing the evolution of the melting process. Further reductions to the system are made to provide simple guidelines concerning the process. Comparison of the solutions with experimental data on the melting of n-octadecane shows excellent agreement.

Tipo de documento

Edición preliminar

Lengua

Inglés

Materias CDU

53 - Física

Palabras clave

Fases (Termodinàmica); Lubrificació i lubrificants; Calor

Páginas

21

392696 bytes

Publicado por

Centre de Recerca Matemàtica

Colección

Prepublicacions del Centre de Recerca Matemàtica; 1021

Documentos

Pr1021.pdf

383.4Kb

 

Derechos

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