Applied Mathematics and Mechanics (English Edition) ›› 2009, Vol. 30 ›› Issue (2): 221-228 .

• Articles • 上一篇    下一篇

Magneto-thermo-elastic waves in an infinite perfectly conducting elastic solid with energy dissipation

  1. Payel Das
  2. Mridula Kanoria
  

    1. Netaji Subhash Engineering College, Technocity,Police Para, Panchpota, Garia, Kolkata-700152, India;
    2. Department of Applied Mathematics, University of Calcutta, 92 A.P.C Road,Kolkata-700009, West Bengal, India
  • 收稿日期:2008-02-14 修回日期:2008-12-04 出版日期:2009-02-11 发布日期:2009-02-11

Magneto-thermo-elastic waves in an infinite perfectly conducting elastic solid with energy dissipation

Payel Das,Mridula Kanoria   

    1. Netaji Subhash Engineering College, Technocity,Police Para, Panchpota, Garia, Kolkata-700152, India;
    2. Department of Applied Mathematics, University of Calcutta, 92 A.P.C Road,Kolkata-700009, West Bengal, India
  • Received:2008-02-14 Revised:2008-12-04 Online:2009-02-11 Published:2009-02-11

摘要: The generalized thermo-elasticity theory, i.e., Green and Naghdi (G-N) III theory, with energy dissipation (TEWED) is employed in the study of time-harmonic plane wave propagation in an unbounded, perfectly electrically conducting elastic medium subject to primary uniform magnetic field. A more general dispersion equation with complex coefficients is obtained for coupled magneto-thermo-elastic wave solved in complex domain by using the Leguerre's method. It reveals that the coupled magneto-thermo-elastic wave corresponds to modified dilatational and thermal wave propagation with finite speeds modified by finite thermal wave speeds, thermo-elastic coupling, thermal diffusivity, and the external magnetic field. Numerical results for a copper-like material are presented.

Abstract: The generalized thermo-elasticity theory, i.e., Green and Naghdi (G-N) III theory, with energy dissipation (TEWED) is employed in the study of time-harmonic plane wave propagation in an unbounded, perfectly electrically conducting elastic medium subject to primary uniform magnetic field. A more general dispersion equation with complex coefficients is obtained for coupled magneto-thermo-elastic wave solved in complex domain by using the Leguerre's method. It reveals that the coupled magneto-thermo-elastic wave corresponds to modified dilatational and thermal wave propagation with finite speeds modified by finite thermal wave speeds, thermo-elastic coupling, thermal diffusivity, and the external magnetic field. Numerical results for a copper-like material are presented.

Key words: generalized thermoelasticity, magneto-thermo-elastic wave, energy dissipation

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