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Temperature field in bodies with self irradiating cavities ; BEM solution / R. Bialecki
Titre : Temperature field in bodies with self irradiating cavities ; BEM solution Type de document : texte imprimé Auteurs : R. Bialecki, Auteur ; L. Grela, Auteur Année de publication : 1998 Importance : p 199-206 Langues : Anglais (eng) Catégories : MATHEMATIQUE-PHYSIQUE-CHIMIE Mots-clés : TRANSFERT DE CHALEUR BOUNDARY ELEMENT METHOD (BEM) Résumé : The paper deals with a situation when portions of the boundary of a heat conducting solid mutually irradiate themselves and exchanging heat by convection. Steady state problems are considered and heat conduction in multilayered media in the presence of temperature dependent heat conductivities is dealt with . Boundary elements are used in the conductive and radiative portion of the analysis. Coupled equations sets resulting from conduction and radiation are solved using an original solution strategy. Numéro du document : A 7482/PHY Niveau Bibliographique : 2 Bull1 (Theme principale) : PHYSIQUE Bull2 (Theme secondaire) : THERMIQUE Temperature field in bodies with self irradiating cavities ; BEM solution [texte imprimé] / R. Bialecki, Auteur ; L. Grela, Auteur . - 1998 . - p 199-206.
Langues : Anglais (eng)
Catégories : MATHEMATIQUE-PHYSIQUE-CHIMIE Mots-clés : TRANSFERT DE CHALEUR BOUNDARY ELEMENT METHOD (BEM) Résumé : The paper deals with a situation when portions of the boundary of a heat conducting solid mutually irradiate themselves and exchanging heat by convection. Steady state problems are considered and heat conduction in multilayered media in the presence of temperature dependent heat conductivities is dealt with . Boundary elements are used in the conductive and radiative portion of the analysis. Coupled equations sets resulting from conduction and radiation are solved using an original solution strategy. Numéro du document : A 7482/PHY Niveau Bibliographique : 2 Bull1 (Theme principale) : PHYSIQUE Bull2 (Theme secondaire) : THERMIQUE Exemplaires
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