DETERMINATION OF MOISTURE DIFFUSION COEFFICIENT OF LARCH BOARD WITH FINITE DIFFERENCE METHOD

This paper deals with the moisture diffusion coefficient of Dahurian Larch (Larix gmelinii Rupr.) by use of the Finite Difference Method (FDM). To obtain moisture distributions the dimensional boards of Dahurian Larch were dried, from which test samples were cut and sliced evenly into 9 pieces in di...

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Main Authors: Qiaofang Zhou, Yingchun Cai, Yan Xu, Xiangling Zhang
Format: Article
Language:English
Published: North Carolina State University 2011-04-01
Series:BioResources
Subjects:
Online Access:http://www.ncsu.edu/bioresources/BioRes_06/BioRes_06_2_1196_Zhou_CXZ_Deter_Moist_Diffus_Larch_Finite_Difference_1393.pdf
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spelling doaj-21e0143e49e34c56b6f46af7e0bbd0dd2020-11-24T22:56:17ZengNorth Carolina State UniversityBioResources1930-21262011-04-016211961203DETERMINATION OF MOISTURE DIFFUSION COEFFICIENT OF LARCH BOARD WITH FINITE DIFFERENCE METHODQiaofang ZhouYingchun CaiYan XuXiangling ZhangThis paper deals with the moisture diffusion coefficient of Dahurian Larch (Larix gmelinii Rupr.) by use of the Finite Difference Method (FDM). To obtain moisture distributions the dimensional boards of Dahurian Larch were dried, from which test samples were cut and sliced evenly into 9 pieces in different drying periods, so that moisture distributions at different locations and times across the thickness of Dahurian Larch were obtained with a weighing method. With these experimental data, FDM was used to solve Fick’s one-dimensional unsteady-state diffusion equation, and the moisture diffusion coefficient across the thickness at specified time was obtained. Results indicated that the moisture diffusion coefficient decreased from the surface to the center of the Dahurian Larch wood, and it decreased with decreasing moisture content at constant wood temperature; as the wood temperature increased, the moisture diffusion coefficient increased, and the effect of the wood temperature on the moisture diffusion coefficient was more significant than that of moisture content. Moisture diffusion coefficients were different for the two experiments due to differing diffusivity of the specimens.www.ncsu.edu/bioresources/BioRes_06/BioRes_06_2_1196_Zhou_CXZ_Deter_Moist_Diffus_Larch_Finite_Difference_1393.pdfFinite Difference MethodUnsteady-state diffusionMoisture diffusion coefficientDahurian Larch board
collection DOAJ
language English
format Article
sources DOAJ
author Qiaofang Zhou
Yingchun Cai
Yan Xu
Xiangling Zhang
spellingShingle Qiaofang Zhou
Yingchun Cai
Yan Xu
Xiangling Zhang
DETERMINATION OF MOISTURE DIFFUSION COEFFICIENT OF LARCH BOARD WITH FINITE DIFFERENCE METHOD
BioResources
Finite Difference Method
Unsteady-state diffusion
Moisture diffusion coefficient
Dahurian Larch board
author_facet Qiaofang Zhou
Yingchun Cai
Yan Xu
Xiangling Zhang
author_sort Qiaofang Zhou
title DETERMINATION OF MOISTURE DIFFUSION COEFFICIENT OF LARCH BOARD WITH FINITE DIFFERENCE METHOD
title_short DETERMINATION OF MOISTURE DIFFUSION COEFFICIENT OF LARCH BOARD WITH FINITE DIFFERENCE METHOD
title_full DETERMINATION OF MOISTURE DIFFUSION COEFFICIENT OF LARCH BOARD WITH FINITE DIFFERENCE METHOD
title_fullStr DETERMINATION OF MOISTURE DIFFUSION COEFFICIENT OF LARCH BOARD WITH FINITE DIFFERENCE METHOD
title_full_unstemmed DETERMINATION OF MOISTURE DIFFUSION COEFFICIENT OF LARCH BOARD WITH FINITE DIFFERENCE METHOD
title_sort determination of moisture diffusion coefficient of larch board with finite difference method
publisher North Carolina State University
series BioResources
issn 1930-2126
publishDate 2011-04-01
description This paper deals with the moisture diffusion coefficient of Dahurian Larch (Larix gmelinii Rupr.) by use of the Finite Difference Method (FDM). To obtain moisture distributions the dimensional boards of Dahurian Larch were dried, from which test samples were cut and sliced evenly into 9 pieces in different drying periods, so that moisture distributions at different locations and times across the thickness of Dahurian Larch were obtained with a weighing method. With these experimental data, FDM was used to solve Fick’s one-dimensional unsteady-state diffusion equation, and the moisture diffusion coefficient across the thickness at specified time was obtained. Results indicated that the moisture diffusion coefficient decreased from the surface to the center of the Dahurian Larch wood, and it decreased with decreasing moisture content at constant wood temperature; as the wood temperature increased, the moisture diffusion coefficient increased, and the effect of the wood temperature on the moisture diffusion coefficient was more significant than that of moisture content. Moisture diffusion coefficients were different for the two experiments due to differing diffusivity of the specimens.
topic Finite Difference Method
Unsteady-state diffusion
Moisture diffusion coefficient
Dahurian Larch board
url http://www.ncsu.edu/bioresources/BioRes_06/BioRes_06_2_1196_Zhou_CXZ_Deter_Moist_Diffus_Larch_Finite_Difference_1393.pdf
work_keys_str_mv AT qiaofangzhou determinationofmoisturediffusioncoefficientoflarchboardwithfinitedifferencemethod
AT yingchuncai determinationofmoisturediffusioncoefficientoflarchboardwithfinitedifferencemethod
AT yanxu determinationofmoisturediffusioncoefficientoflarchboardwithfinitedifferencemethod
AT xianglingzhang determinationofmoisturediffusioncoefficientoflarchboardwithfinitedifferencemethod
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