Determination of Interfacial Boundary Motion Law in Problems Modeling Phase Transformation Kinetics

An analytical method for solution of multidimensional problems of heat conductivity with phase transformations which is based on integral equation method has been developed. The method makes it possible to determine interfacial boundary motion law excluding determination of temperature field and it...

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Main Authors: V. V. Shevelyov, J. L. Lokshin
Format: Article
Language:Russian
Published: Belarusian National Technical University 2004-06-01
Series:Izvestiâ Vysših Učebnyh Zavedenij i Ènergetičeskih ob Edinennij SNG. Ènergetika
Online Access:https://energy.bntu.by/jour/article/view/1133
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author V. V. Shevelyov
J. L. Lokshin
author_facet V. V. Shevelyov
J. L. Lokshin
author_sort V. V. Shevelyov
collection DOAJ
description An analytical method for solution of multidimensional problems of heat conductivity with phase transformations which is based on integral equation method has been developed. The method makes it possible to determine interfacial boundary motion law excluding determination of temperature field and it also permits to investigate stability of its shape. The paper reveals that the proposed method is rather efficient in the case when heat transfer takes place in one phase.
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spelling doaj.art-db5ffb8afe0147489457cca2f99f95362023-03-13T07:41:42ZrusBelarusian National Technical UniversityIzvestiâ Vysših Učebnyh Zavedenij i Ènergetičeskih ob Edinennij SNG. Ènergetika1029-74482414-03412004-06-0103445110.21122/1029-7448-2004-0-3-44-511092Determination of Interfacial Boundary Motion Law in Problems Modeling Phase Transformation KineticsV. V. Shevelyov0J. L. Lokshin1Московская государственная академия тонкой химической технологии имени М. В. ЛомоносоваМосковская государственная академия тонкой химической технологии имени М. В. ЛомоносоваAn analytical method for solution of multidimensional problems of heat conductivity with phase transformations which is based on integral equation method has been developed. The method makes it possible to determine interfacial boundary motion law excluding determination of temperature field and it also permits to investigate stability of its shape. The paper reveals that the proposed method is rather efficient in the case when heat transfer takes place in one phase.https://energy.bntu.by/jour/article/view/1133
spellingShingle V. V. Shevelyov
J. L. Lokshin
Determination of Interfacial Boundary Motion Law in Problems Modeling Phase Transformation Kinetics
Izvestiâ Vysših Učebnyh Zavedenij i Ènergetičeskih ob Edinennij SNG. Ènergetika
title Determination of Interfacial Boundary Motion Law in Problems Modeling Phase Transformation Kinetics
title_full Determination of Interfacial Boundary Motion Law in Problems Modeling Phase Transformation Kinetics
title_fullStr Determination of Interfacial Boundary Motion Law in Problems Modeling Phase Transformation Kinetics
title_full_unstemmed Determination of Interfacial Boundary Motion Law in Problems Modeling Phase Transformation Kinetics
title_short Determination of Interfacial Boundary Motion Law in Problems Modeling Phase Transformation Kinetics
title_sort determination of interfacial boundary motion law in problems modeling phase transformation kinetics
url https://energy.bntu.by/jour/article/view/1133
work_keys_str_mv AT vvshevelyov determinationofinterfacialboundarymotionlawinproblemsmodelingphasetransformationkinetics
AT jllokshin determinationofinterfacialboundarymotionlawinproblemsmodelingphasetransformationkinetics