Numerical Simulation for Freeze Drying of Skimmed Milk with Moving Sublimation Front using Tri-Diagonal Matrix Algorithm

Freeze drying is a highly advanced dehydration technique used for preserving pharmaceuticals, human organs transplanted to others and highly heat sensitive food products. During the freeze drying, there are two layers formed namely dried region and frozen region. In this present work, a numerical mo...

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Main Authors: R. Naik, G. Arunsandeep, V. P. Chandramohan
Format: Article
Language:English
Published: Isfahan University of Technology 2017-01-01
Series:Journal of Applied Fluid Mechanics
Subjects:
Online Access:http://jafmonline.net/JournalArchive/download?file_ID=42497&issue_ID=240
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spelling doaj-bee56802e42141ccb52064a4bd43b9282020-11-25T02:46:24ZengIsfahan University of Technology Journal of Applied Fluid Mechanics1735-35722017-01-01103813818.Numerical Simulation for Freeze Drying of Skimmed Milk with Moving Sublimation Front using Tri-Diagonal Matrix AlgorithmR. Naik0G. Arunsandeep1V. P. Chandramohan2NIT Warangal, IndiaNIT Warangal, IndiaNATIONAL INSTITUTE OF TECHNOLOGY WARANGALFreeze drying is a highly advanced dehydration technique used for preserving pharmaceuticals, human organs transplanted to others and highly heat sensitive food products. During the freeze drying, there are two layers formed namely dried region and frozen region. In this present work, a numerical model is developed to estimate the temperature distribution of both regions. The sample object considered is skimmed milk. The transient heat conduction equations are solved for both regions of dried and frozen region. The interface layer between the two region is considered as moving sublimation front as same as the realistic case. Radiative boundary condition at the top and convective boundary condition at the bottom are considered. The model has been solved by finite difference method and the scheme used is backward difference in time and central difference in space (implicit scheme), which generates set of finite difference equations forming a Tri-Diagonal Matrix. A computer program is developed in MATLAB to solve the tri-diagonal matrix. The temperature distribution along the length of the product with varying chamber pressures and the sublimation front temperature with time are estimated. The transient effect of sublimation front movement was estimated with different applied chamber pressure. It was noticed that at lower pressure the sublimation rate is very fast.http://jafmonline.net/JournalArchive/download?file_ID=42497&issue_ID=240Freeze drying; Tri-diagonal matrix algorithm; Convective boundary condition; Radiative boundary condition; Implicit scheme; Sublimation front.
collection DOAJ
language English
format Article
sources DOAJ
author R. Naik
G. Arunsandeep
V. P. Chandramohan
spellingShingle R. Naik
G. Arunsandeep
V. P. Chandramohan
Numerical Simulation for Freeze Drying of Skimmed Milk with Moving Sublimation Front using Tri-Diagonal Matrix Algorithm
Journal of Applied Fluid Mechanics
Freeze drying; Tri-diagonal matrix algorithm; Convective boundary condition; Radiative boundary condition; Implicit scheme; Sublimation front.
author_facet R. Naik
G. Arunsandeep
V. P. Chandramohan
author_sort R. Naik
title Numerical Simulation for Freeze Drying of Skimmed Milk with Moving Sublimation Front using Tri-Diagonal Matrix Algorithm
title_short Numerical Simulation for Freeze Drying of Skimmed Milk with Moving Sublimation Front using Tri-Diagonal Matrix Algorithm
title_full Numerical Simulation for Freeze Drying of Skimmed Milk with Moving Sublimation Front using Tri-Diagonal Matrix Algorithm
title_fullStr Numerical Simulation for Freeze Drying of Skimmed Milk with Moving Sublimation Front using Tri-Diagonal Matrix Algorithm
title_full_unstemmed Numerical Simulation for Freeze Drying of Skimmed Milk with Moving Sublimation Front using Tri-Diagonal Matrix Algorithm
title_sort numerical simulation for freeze drying of skimmed milk with moving sublimation front using tri-diagonal matrix algorithm
publisher Isfahan University of Technology
series Journal of Applied Fluid Mechanics
issn 1735-3572
publishDate 2017-01-01
description Freeze drying is a highly advanced dehydration technique used for preserving pharmaceuticals, human organs transplanted to others and highly heat sensitive food products. During the freeze drying, there are two layers formed namely dried region and frozen region. In this present work, a numerical model is developed to estimate the temperature distribution of both regions. The sample object considered is skimmed milk. The transient heat conduction equations are solved for both regions of dried and frozen region. The interface layer between the two region is considered as moving sublimation front as same as the realistic case. Radiative boundary condition at the top and convective boundary condition at the bottom are considered. The model has been solved by finite difference method and the scheme used is backward difference in time and central difference in space (implicit scheme), which generates set of finite difference equations forming a Tri-Diagonal Matrix. A computer program is developed in MATLAB to solve the tri-diagonal matrix. The temperature distribution along the length of the product with varying chamber pressures and the sublimation front temperature with time are estimated. The transient effect of sublimation front movement was estimated with different applied chamber pressure. It was noticed that at lower pressure the sublimation rate is very fast.
topic Freeze drying; Tri-diagonal matrix algorithm; Convective boundary condition; Radiative boundary condition; Implicit scheme; Sublimation front.
url http://jafmonline.net/JournalArchive/download?file_ID=42497&issue_ID=240
work_keys_str_mv AT rnaik numericalsimulationforfreezedryingofskimmedmilkwithmovingsublimationfrontusingtridiagonalmatrixalgorithm
AT garunsandeep numericalsimulationforfreezedryingofskimmedmilkwithmovingsublimationfrontusingtridiagonalmatrixalgorithm
AT vpchandramohan numericalsimulationforfreezedryingofskimmedmilkwithmovingsublimationfrontusingtridiagonalmatrixalgorithm
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