Two-dimensional transient problem for a thick disc with internal heat source

The problem treated here is to determine thermo-elastic stress in a thick disc due to interior heat generation within the solid, under thermal boundary condition, which is subjected to arbitrary initial temperature on the upper and lower face at zero temperature, and the fixed circular edges with ad...

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Main Authors: Vargeze Vinod, Kalsa Lalsing
Format: Article
Language:English
Published: University of Belgrade - Faculty of Mechanical Engineering, Belgrade 2010-01-01
Series:FME Transactions
Subjects:
Online Access:https://scindeks-clanci.ceon.rs/data/pdf/1451-2092/2010/1451-20921004173V.pdf
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author Vargeze Vinod
Kalsa Lalsing
author_facet Vargeze Vinod
Kalsa Lalsing
author_sort Vargeze Vinod
collection DOAJ
description The problem treated here is to determine thermo-elastic stress in a thick disc due to interior heat generation within the solid, under thermal boundary condition, which is subjected to arbitrary initial temperature on the upper and lower face at zero temperature, and the fixed circular edges with additional sectional heat supply. The governing heat conduction equation has been solved by using integral transformation techniques. The results are obtained in series form in terms of Bessel's functions. Numerical calculations are carried out for a particular case of a disc made of Aluminum metal and the results are depicted in figures.
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spelling doaj.art-b61d11826ab146598c857b4b2bb5f0512022-12-21T18:19:35ZengUniversity of Belgrade - Faculty of Mechanical Engineering, BelgradeFME Transactions1451-20922406-128X2010-01-013841731801451-20921004173VTwo-dimensional transient problem for a thick disc with internal heat sourceVargeze Vinod0Kalsa Lalsing1Reliance Industries Limited, Mauda, IndiaRTM Nagpur University Mahatma Gandhi Arts, Science and Late N.P. Commerce College, Armori, IndiaThe problem treated here is to determine thermo-elastic stress in a thick disc due to interior heat generation within the solid, under thermal boundary condition, which is subjected to arbitrary initial temperature on the upper and lower face at zero temperature, and the fixed circular edges with additional sectional heat supply. The governing heat conduction equation has been solved by using integral transformation techniques. The results are obtained in series form in terms of Bessel's functions. Numerical calculations are carried out for a particular case of a disc made of Aluminum metal and the results are depicted in figures.https://scindeks-clanci.ceon.rs/data/pdf/1451-2092/2010/1451-20921004173V.pdftransient responsedisctemperature distributionthermal stressintegral transform
spellingShingle Vargeze Vinod
Kalsa Lalsing
Two-dimensional transient problem for a thick disc with internal heat source
FME Transactions
transient response
disc
temperature distribution
thermal stress
integral transform
title Two-dimensional transient problem for a thick disc with internal heat source
title_full Two-dimensional transient problem for a thick disc with internal heat source
title_fullStr Two-dimensional transient problem for a thick disc with internal heat source
title_full_unstemmed Two-dimensional transient problem for a thick disc with internal heat source
title_short Two-dimensional transient problem for a thick disc with internal heat source
title_sort two dimensional transient problem for a thick disc with internal heat source
topic transient response
disc
temperature distribution
thermal stress
integral transform
url https://scindeks-clanci.ceon.rs/data/pdf/1451-2092/2010/1451-20921004173V.pdf
work_keys_str_mv AT vargezevinod twodimensionaltransientproblemforathickdiscwithinternalheatsource
AT kalsalalsing twodimensionaltransientproblemforathickdiscwithinternalheatsource