4.5 Article

Eigenvalue approach on a two-dimensional thermal shock problem with weak, normal and strong conductivity

Journal

EUROPEAN PHYSICAL JOURNAL PLUS
Volume 131, Issue 8, Pages -

Publisher

SPRINGER HEIDELBERG
DOI: 10.1140/epjp/i2016-16289-9

Keywords

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Funding

  1. Deanship of Scientific Research (DSR), King Abdulaziz University, Jeddah [130-881-D1435]
  2. DSR

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The present paper is devoted to the study of a two-dimensional thermal shock problem with weak, normal and strong conductivity using the eigenvalue approach. The governing equations are taken in the context of the new consideration of heat conduction with fractional order generalized thermoelasticity with the Lord-Shulman model (LS model). The bounding surface of the half-space is taken to be traction free and subjected to a time-dependent thermal shock. The Laplace and the exponential Fourier transform techniques are used to obtain the analytical solutions in the transformed domain by the eigenvalue approach. Numerical computations have been done for copper-like material for weak, normal and strong conductivity and the results are presented graphically to estimate the effects of the fractional order parameter.

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