Effects of fractional and two-temperature parameters on stress distributions for an unbounded generalized thermoelastic medium with spherical cavity
Effects of fractional and two-temperature parameters on the distribution of stresses of an unbounded isotropic thermoelastic medium with spherical cavity are studied in the context of the theory of two-temperature generalized thermoelasticity based on the Green-Naghdi model III using fractional orde...
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Series: | Arab Journal of Basic and Applied Sciences |
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Online Access: | http://dx.doi.org/10.1080/25765299.2019.1621511 |
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doaj-dc8bc441731840e6a1ba0d9964e326c22020-11-25T03:06:49ZengTaylor & Francis GroupArab Journal of Basic and Applied Sciences2576-52992019-01-0126130231010.1080/25765299.2019.16215111621511Effects of fractional and two-temperature parameters on stress distributions for an unbounded generalized thermoelastic medium with spherical cavityMd Abul Kashim Molla0Nasiruddin Mondal1Sadek Hossain Mallik2Aliah UniversityAliah UniversityAliah UniversityEffects of fractional and two-temperature parameters on the distribution of stresses of an unbounded isotropic thermoelastic medium with spherical cavity are studied in the context of the theory of two-temperature generalized thermoelasticity based on the Green-Naghdi model III using fractional order heat conduction equation. The surface of the cavity is considered to be free from traction and is subjected to a smooth and time-dependent-heating effect. A spherical polar coordinate system has been used to describe the problem and the resulting governing equations are solved in Laplace transform domain. Numerical Laplace transform inversion method has been then applied to get the stresses in time domain. The numerical estimates of the distributions of stresses are obtained and are presented graphically to study the effects of fractional and two-temperature parameters.http://dx.doi.org/10.1080/25765299.2019.1621511two-temperature generalized thermoelasticitygreen-naghdi model iiitime-fractional heat conductionspherical cavity |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Md Abul Kashim Molla Nasiruddin Mondal Sadek Hossain Mallik |
spellingShingle |
Md Abul Kashim Molla Nasiruddin Mondal Sadek Hossain Mallik Effects of fractional and two-temperature parameters on stress distributions for an unbounded generalized thermoelastic medium with spherical cavity Arab Journal of Basic and Applied Sciences two-temperature generalized thermoelasticity green-naghdi model iii time-fractional heat conduction spherical cavity |
author_facet |
Md Abul Kashim Molla Nasiruddin Mondal Sadek Hossain Mallik |
author_sort |
Md Abul Kashim Molla |
title |
Effects of fractional and two-temperature parameters on stress distributions for an unbounded generalized thermoelastic medium with spherical cavity |
title_short |
Effects of fractional and two-temperature parameters on stress distributions for an unbounded generalized thermoelastic medium with spherical cavity |
title_full |
Effects of fractional and two-temperature parameters on stress distributions for an unbounded generalized thermoelastic medium with spherical cavity |
title_fullStr |
Effects of fractional and two-temperature parameters on stress distributions for an unbounded generalized thermoelastic medium with spherical cavity |
title_full_unstemmed |
Effects of fractional and two-temperature parameters on stress distributions for an unbounded generalized thermoelastic medium with spherical cavity |
title_sort |
effects of fractional and two-temperature parameters on stress distributions for an unbounded generalized thermoelastic medium with spherical cavity |
publisher |
Taylor & Francis Group |
series |
Arab Journal of Basic and Applied Sciences |
issn |
2576-5299 |
publishDate |
2019-01-01 |
description |
Effects of fractional and two-temperature parameters on the distribution of stresses of an unbounded isotropic thermoelastic medium with spherical cavity are studied in the context of the theory of two-temperature generalized thermoelasticity based on the Green-Naghdi model III using fractional order heat conduction equation. The surface of the cavity is considered to be free from traction and is subjected to a smooth and time-dependent-heating effect. A spherical polar coordinate system has been used to describe the problem and the resulting governing equations are solved in Laplace transform domain. Numerical Laplace transform inversion method has been then applied to get the stresses in time domain. The numerical estimates of the distributions of stresses are obtained and are presented graphically to study the effects of fractional and two-temperature parameters. |
topic |
two-temperature generalized thermoelasticity green-naghdi model iii time-fractional heat conduction spherical cavity |
url |
http://dx.doi.org/10.1080/25765299.2019.1621511 |
work_keys_str_mv |
AT mdabulkashimmolla effectsoffractionalandtwotemperatureparametersonstressdistributionsforanunboundedgeneralizedthermoelasticmediumwithsphericalcavity AT nasiruddinmondal effectsoffractionalandtwotemperatureparametersonstressdistributionsforanunboundedgeneralizedthermoelasticmediumwithsphericalcavity AT sadekhossainmallik effectsoffractionalandtwotemperatureparametersonstressdistributionsforanunboundedgeneralizedthermoelasticmediumwithsphericalcavity |
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