Green's function method (GFM) and mathematical solution for coupled equations of transport problem during convective drying
Author:
, , , , ,Year
: 2016
Abstract: A one-dimensional unsteady state mathematical model of coupled heat and mass transfer equations is accomplished to simulate the convective drying of cylindrical quince slices with axis parallel to the hot air flow. The semi-analytical proposed solution method considers fundamentals of the convective drying process and takes internal resistances to temperature and moisture content into account. Green's function method (GFM) is used due to existence of time dependent boundary conditions. In the present study, unlike classic problems, evaporation term initiate a strong coupling between heat and mass transfer equations and therefore in the present study the basic idea of numerical solutions which is repetition and correction, is used to present a novel analytical solution and correct it.In addition the effects of Biot number and relative humidity on drying kinetics are investigated. The agreement between published experimental results and model predictions is remarkable.
Keyword(s): Convective drying,Heat and mass transfer,Coupled equations,Analytical solution,Green’s function method
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Green's function method (GFM) and mathematical solution for coupled equations of transport problem during convective drying
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contributor author | سیدمحمد وحیدحسینی | en |
contributor author | ابراهیم براتی باقرآباد | en |
contributor author | جواد ابوالفضلی اصفهانی | en |
contributor author | seyed mohammad vahidhosseini | fa |
contributor author | ebrahim barati | fa |
contributor author | Javad Abolfazli Esfahani | fa |
date accessioned | 2020-06-06T13:29:08Z | |
date available | 2020-06-06T13:29:08Z | |
date issued | 2016 | |
identifier uri | https://libsearch.um.ac.ir:443/fum/handle/fum/3356821?locale-attribute=en | |
description abstract | A one-dimensional unsteady state mathematical model of coupled heat and mass transfer equations is accomplished to simulate the convective drying of cylindrical quince slices with axis parallel to the hot air flow. The semi-analytical proposed solution method considers fundamentals of the convective drying process and takes internal resistances to temperature and moisture content into account. Green's function method (GFM) is used due to existence of time dependent boundary conditions. In the present study, unlike classic problems, evaporation term initiate a strong coupling between heat and mass transfer equations and therefore in the present study the basic idea of numerical solutions which is repetition and correction, is used to present a novel analytical solution and correct it.In addition the effects of Biot number and relative humidity on drying kinetics are investigated. The agreement between published experimental results and model predictions is remarkable. | en |
language | English | |
title | Green's function method (GFM) and mathematical solution for coupled equations of transport problem during convective drying | en |
type | Journal Paper | |
contenttype | External Fulltext | |
subject keywords | Convective drying | en |
subject keywords | Heat and mass transfer | en |
subject keywords | Coupled equations | en |
subject keywords | Analytical solution | en |
subject keywords | Green’s function method | en |
journal title | Journal of Food Engineering | en |
journal title | Journal of Food Engineering | fa |
pages | 24-36 | |
journal volume | 187 | |
journal issue | 0 | |
identifier link | https://profdoc.um.ac.ir/paper-abstract-1055958.html | |
identifier articleid | 1055958 |