Calculation of Wall Heat Conductivity under Non-Symmetric Boundary Conditions

A mathematical model for heating multi-layer walls with non-symmetric boundary surface conditions has been developed in the paper. Advancing of phase transformation front along cross-section is considered with the purpose to take into account phase and chemical transformations in high-impact coating...

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Main Author: R. I. Yesman
Format: Article
Language:Russian
Published: Belarusian National Technical University 2010-08-01
Series:Izvestiâ Vysših Učebnyh Zavedenij i Ènergetičeskih ob Edinennij SNG. Ènergetika
Online Access:https://energy.bntu.by/jour/article/view/319
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author R. I. Yesman
author_facet R. I. Yesman
author_sort R. I. Yesman
collection DOAJ
description A mathematical model for heating multi-layer walls with non-symmetric boundary surface conditions has been developed in the paper. Advancing of phase transformation front along cross-section is considered with the purpose to take into account phase and chemical transformations in high-impact coatings and the Dirac δ-function is applied in this case.While stating a problem nonlinear boundary conditions and differential equations of heat transfer with due account of thermal and physical characteristics dependence on temperature have been used in the paper. Solution of the problem has been realized by numerical methods in accordance with the developed algorithms.
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spelling doaj.art-88eba5292d7e45d48df75ae3bf39ebc82023-03-13T07:41:46ZrusBelarusian National Technical UniversityIzvestiâ Vysših Učebnyh Zavedenij i Ènergetičeskih ob Edinennij SNG. Ènergetika1029-74482414-03412010-08-01044351313Calculation of Wall Heat Conductivity under Non-Symmetric Boundary ConditionsR. I. Yesman0Белорусский национальный технический университетA mathematical model for heating multi-layer walls with non-symmetric boundary surface conditions has been developed in the paper. Advancing of phase transformation front along cross-section is considered with the purpose to take into account phase and chemical transformations in high-impact coatings and the Dirac δ-function is applied in this case.While stating a problem nonlinear boundary conditions and differential equations of heat transfer with due account of thermal and physical characteristics dependence on temperature have been used in the paper. Solution of the problem has been realized by numerical methods in accordance with the developed algorithms.https://energy.bntu.by/jour/article/view/319
spellingShingle R. I. Yesman
Calculation of Wall Heat Conductivity under Non-Symmetric Boundary Conditions
Izvestiâ Vysših Učebnyh Zavedenij i Ènergetičeskih ob Edinennij SNG. Ènergetika
title Calculation of Wall Heat Conductivity under Non-Symmetric Boundary Conditions
title_full Calculation of Wall Heat Conductivity under Non-Symmetric Boundary Conditions
title_fullStr Calculation of Wall Heat Conductivity under Non-Symmetric Boundary Conditions
title_full_unstemmed Calculation of Wall Heat Conductivity under Non-Symmetric Boundary Conditions
title_short Calculation of Wall Heat Conductivity under Non-Symmetric Boundary Conditions
title_sort calculation of wall heat conductivity under non symmetric boundary conditions
url https://energy.bntu.by/jour/article/view/319
work_keys_str_mv AT riyesman calculationofwallheatconductivityundernonsymmetricboundaryconditions