Effect of rotation and relaxation times on plane waves in generalized thermo-visco-elasticity

The generalized dynamical theory of thermo-elasticity proposed by Green and Lindsay is applied to study the propagation of harmonically time-dependent thermo-visco-elastic plane waves of assigned frequency in an infinite visco-elastic solid of Kelvin-Voigt type, when the entire medium rotates with a...

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Main Authors: S. K. Roychoudhuri, Santwana Mukhopadhyay
Format: Article
Language:English
Published: Hindawi Limited 2000-01-01
Series:International Journal of Mathematics and Mathematical Sciences
Subjects:
Online Access:http://dx.doi.org/10.1155/S0161171200001356
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spelling doaj-4e3f797caa83425b8ab1700a0248734e2020-11-24T23:08:33ZengHindawi LimitedInternational Journal of Mathematics and Mathematical Sciences0161-17121687-04252000-01-0123749750510.1155/S0161171200001356Effect of rotation and relaxation times on plane waves in generalized thermo-visco-elasticityS. K. Roychoudhuri0Santwana Mukhopadhyay1Department of Mathematics, University of Burdwan, Burdwan 713104, IndiaDepartment of Applied Mathematics, Institute of Technology, Banaras Hindu University, Varanasi 221 005, IndiaThe generalized dynamical theory of thermo-elasticity proposed by Green and Lindsay is applied to study the propagation of harmonically time-dependent thermo-visco-elastic plane waves of assigned frequency in an infinite visco-elastic solid of Kelvin-Voigt type, when the entire medium rotates with a uniform angular velocity. A more general dispersion equation is deduced to determine the effects of rotation, visco-elasticity, and relaxation time on the phase-velocity of the coupled waves. The solutions for the phase velocity and attenuation coefficient are obtained for small thermo-elastic couplings by the perturbation technique. Taking an appropriate material, the numerical values of the phase velocity of the waves are computed and the results are shown graphically to illustrate the problem.http://dx.doi.org/10.1155/S0161171200001356Plane wavesrotating visco-elastic medium generalized thermo-elasticity.
collection DOAJ
language English
format Article
sources DOAJ
author S. K. Roychoudhuri
Santwana Mukhopadhyay
spellingShingle S. K. Roychoudhuri
Santwana Mukhopadhyay
Effect of rotation and relaxation times on plane waves in generalized thermo-visco-elasticity
International Journal of Mathematics and Mathematical Sciences
Plane waves
rotating visco-elastic medium
generalized thermo-elasticity.
author_facet S. K. Roychoudhuri
Santwana Mukhopadhyay
author_sort S. K. Roychoudhuri
title Effect of rotation and relaxation times on plane waves in generalized thermo-visco-elasticity
title_short Effect of rotation and relaxation times on plane waves in generalized thermo-visco-elasticity
title_full Effect of rotation and relaxation times on plane waves in generalized thermo-visco-elasticity
title_fullStr Effect of rotation and relaxation times on plane waves in generalized thermo-visco-elasticity
title_full_unstemmed Effect of rotation and relaxation times on plane waves in generalized thermo-visco-elasticity
title_sort effect of rotation and relaxation times on plane waves in generalized thermo-visco-elasticity
publisher Hindawi Limited
series International Journal of Mathematics and Mathematical Sciences
issn 0161-1712
1687-0425
publishDate 2000-01-01
description The generalized dynamical theory of thermo-elasticity proposed by Green and Lindsay is applied to study the propagation of harmonically time-dependent thermo-visco-elastic plane waves of assigned frequency in an infinite visco-elastic solid of Kelvin-Voigt type, when the entire medium rotates with a uniform angular velocity. A more general dispersion equation is deduced to determine the effects of rotation, visco-elasticity, and relaxation time on the phase-velocity of the coupled waves. The solutions for the phase velocity and attenuation coefficient are obtained for small thermo-elastic couplings by the perturbation technique. Taking an appropriate material, the numerical values of the phase velocity of the waves are computed and the results are shown graphically to illustrate the problem.
topic Plane waves
rotating visco-elastic medium
generalized thermo-elasticity.
url http://dx.doi.org/10.1155/S0161171200001356
work_keys_str_mv AT skroychoudhuri effectofrotationandrelaxationtimesonplanewavesingeneralizedthermoviscoelasticity
AT santwanamukhopadhyay effectofrotationandrelaxationtimesonplanewavesingeneralizedthermoviscoelasticity
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