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Eigenvalue approach to study generalized thermoelastic problem for an infinitely long circular cylinder

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EN
Abstrakty
EN
In this work, a one-dimensional problem for an infinitely long circular cylinder is solved by an eigenvalue approach. The outer surface of this cylinder is traction free and subjected to a thermal shock. The problem is in the context of the theory of generalized thermoelasticity with one relaxation time parameter. The Laplace transform technuiqe is used. The solution in the transformed domain is obtained by a direct eigenvalue approach. The inversion of the Laplace transform solution is evaluated numerically. Numerical results are obtained and represented graphically for two cases and finally compared with the current results available in the literature.
Rocznik
Strony
731--745
Opis fizyczny
Bibliogr. 17 poz., wykr.
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autor
Bibliografia
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  • Das N.C., Das S.N. and Das B. (1983): Eigenvalue approach to thermoelasticity.-J. Thermal Stress, vol.6, pp.35-43.
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  • Lahiri A. and Das B. (2008): Eigenvalue approach to generalized thermoealastic interactions in an unbounded body with a circular cylindrical hole without energy dissipation.-Int. J. Appl. Mech. Eng., vol.13, No.4, pp.939-953.
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  • Sherief H.H. and Anwar M. (1986): Problem in generalized thermoelastcity.- J. Thermal Stress, vol.9, pp.165-181.
  • Sherief H.H. and Anwar M. (1989): A problem in generalized thermoelastcity for an infinitely long annular cylinder composed of two different materials.- J. Thermal Stress, vol.12, pp.529-543.
  • Sherief H.H. (1986): State space formulation for generalized thermoelastcity with one relaxation time including heat sources.- J. Thermal Stress, vol.16, pp.163-180.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ5-0017-0028
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