Theoretical model for heat transfer in the single crystal making

A mathematical model has been developed that describes the heat transfer process during melt solidification and to define axial and radial thermal profile in both phases, solid and liquid. With this model we can obtain the geometric interface profile. Also we can study the influence of the main para...

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Main Authors: Farid Chejne, Whady Flórez, Tamila Ragimova, Juan Hernández
Format: Article
Language:English
Published: Universidad de Antioquia 2002-11-01
Series:Revista Facultad de Ingeniería Universidad de Antioquia
Subjects:
Online Access:https://revistas.udea.edu.co/index.php/ingenieria/article/view/326363
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author Farid Chejne
Whady Flórez
Tamila Ragimova
Juan Hernández
author_facet Farid Chejne
Whady Flórez
Tamila Ragimova
Juan Hernández
author_sort Farid Chejne
collection DOAJ
description A mathematical model has been developed that describes the heat transfer process during melt solidification and to define axial and radial thermal profile in both phases, solid and liquid. With this model we can obtain the geometric interface profile. Also we can study the influence of the main parameters such as the Biot number, the Peclet number and the lowering rate of the ampoule. We have used this model to give a conceptual explanation about heat transfer phenomena involved in another process like single crystal making.
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spelling doaj.art-c8db4d16bfc34cb682e9993e4535eec62023-03-23T12:39:39ZengUniversidad de AntioquiaRevista Facultad de Ingeniería Universidad de Antioquia0120-62302422-28442002-11-012610.17533/udea.redin.326363Theoretical model for heat transfer in the single crystal makingFarid Chejne0Whady Flórez1Tamila Ragimova2Juan Hernández3Universidad NacionalUniversidad Pontificia BolivarianaUniversidad de AntioquiaUniversidad Pontificia BolivarianaA mathematical model has been developed that describes the heat transfer process during melt solidification and to define axial and radial thermal profile in both phases, solid and liquid. With this model we can obtain the geometric interface profile. Also we can study the influence of the main parameters such as the Biot number, the Peclet number and the lowering rate of the ampoule. We have used this model to give a conceptual explanation about heat transfer phenomena involved in another process like single crystal making.https://revistas.udea.edu.co/index.php/ingenieria/article/view/326363Fabricación de cristalescrecimiento de cristalessolidificacióntransferencia de calorhornos.
spellingShingle Farid Chejne
Whady Flórez
Tamila Ragimova
Juan Hernández
Theoretical model for heat transfer in the single crystal making
Revista Facultad de Ingeniería Universidad de Antioquia
Fabricación de cristales
crecimiento de cristales
solidificación
transferencia de calor
hornos.
title Theoretical model for heat transfer in the single crystal making
title_full Theoretical model for heat transfer in the single crystal making
title_fullStr Theoretical model for heat transfer in the single crystal making
title_full_unstemmed Theoretical model for heat transfer in the single crystal making
title_short Theoretical model for heat transfer in the single crystal making
title_sort theoretical model for heat transfer in the single crystal making
topic Fabricación de cristales
crecimiento de cristales
solidificación
transferencia de calor
hornos.
url https://revistas.udea.edu.co/index.php/ingenieria/article/view/326363
work_keys_str_mv AT faridchejne theoreticalmodelforheattransferinthesinglecrystalmaking
AT whadyflorez theoreticalmodelforheattransferinthesinglecrystalmaking
AT tamilaragimova theoreticalmodelforheattransferinthesinglecrystalmaking
AT juanhernandez theoreticalmodelforheattransferinthesinglecrystalmaking