Transient analysis of heat and mass transfer during heat treatment of wood including pressure equation

In the present paper, three-dimensional equations for coupled heat and mass conservation equations for wood are solved to study the transient heat and mass transfer during high thermal treatment of wood. The model is based on Luikov’s approach, including pressure. The model equations are so...

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Main Authors: Younsi Ramdane, Kadem Souhila, Lachemet Azziz, Kocaefe Duygu
Format: Article
Language:English
Published: VINCA Institute of Nuclear Sciences 2015-01-01
Series:Thermal Science
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0354-9836/2015/0354-98361200113Y.pdf
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spelling doaj-2f4763d4bc444221a135f39ad9e7428f2021-01-02T08:33:51ZengVINCA Institute of Nuclear SciencesThermal Science0354-98362015-01-0119269370210.2298/TSCI120309113Y0354-98361200113YTransient analysis of heat and mass transfer during heat treatment of wood including pressure equationYounsi Ramdane0Kadem Souhila1Lachemet Azziz2Kocaefe Duygu3Department of Applied Sciences, University of Quebec at Chicoutimi, GHB, Chicoutimi, Quebec, CanadaChemical Engineering Institute, University of Sciences and Technology (USTHB), B.P., El Alia Bab-Ezzouar, Algiers, AlgeriaChemical Engineering Institute, University of Sciences and Technology (USTHB), B.P., El Alia Bab-Ezzouar, Algiers, AlgeriaDepartment of Applied Sciences, University of Quebec at Chicoutimi, GHB, Chicoutimi, Quebec, CanadaIn the present paper, three-dimensional equations for coupled heat and mass conservation equations for wood are solved to study the transient heat and mass transfer during high thermal treatment of wood. The model is based on Luikov’s approach, including pressure. The model equations are solved numerically by the commercial package FEMLfor the temperature and moisture content histories under different treatment conditions. The simulation of the proposed conjugate problem allows the assessment of the effect of the heat and mass transfer within wood. A parametric study was also carried out to determine the effects of several parameters such as initial moisture content and the sample thickness on the temperature, pressure and moisture content distributions within the samples during heat treatment.http://www.doiserbia.nb.rs/img/doi/0354-9836/2015/0354-98361200113Y.pdfheat and mass transferhigh-temperature wood treatmentmathematical modelingLuikov’s modelconjugate problempressure equation
collection DOAJ
language English
format Article
sources DOAJ
author Younsi Ramdane
Kadem Souhila
Lachemet Azziz
Kocaefe Duygu
spellingShingle Younsi Ramdane
Kadem Souhila
Lachemet Azziz
Kocaefe Duygu
Transient analysis of heat and mass transfer during heat treatment of wood including pressure equation
Thermal Science
heat and mass transfer
high-temperature wood treatment
mathematical modeling
Luikov’s model
conjugate problem
pressure equation
author_facet Younsi Ramdane
Kadem Souhila
Lachemet Azziz
Kocaefe Duygu
author_sort Younsi Ramdane
title Transient analysis of heat and mass transfer during heat treatment of wood including pressure equation
title_short Transient analysis of heat and mass transfer during heat treatment of wood including pressure equation
title_full Transient analysis of heat and mass transfer during heat treatment of wood including pressure equation
title_fullStr Transient analysis of heat and mass transfer during heat treatment of wood including pressure equation
title_full_unstemmed Transient analysis of heat and mass transfer during heat treatment of wood including pressure equation
title_sort transient analysis of heat and mass transfer during heat treatment of wood including pressure equation
publisher VINCA Institute of Nuclear Sciences
series Thermal Science
issn 0354-9836
publishDate 2015-01-01
description In the present paper, three-dimensional equations for coupled heat and mass conservation equations for wood are solved to study the transient heat and mass transfer during high thermal treatment of wood. The model is based on Luikov’s approach, including pressure. The model equations are solved numerically by the commercial package FEMLfor the temperature and moisture content histories under different treatment conditions. The simulation of the proposed conjugate problem allows the assessment of the effect of the heat and mass transfer within wood. A parametric study was also carried out to determine the effects of several parameters such as initial moisture content and the sample thickness on the temperature, pressure and moisture content distributions within the samples during heat treatment.
topic heat and mass transfer
high-temperature wood treatment
mathematical modeling
Luikov’s model
conjugate problem
pressure equation
url http://www.doiserbia.nb.rs/img/doi/0354-9836/2015/0354-98361200113Y.pdf
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