Wave propagation in an initially stressed rotating thermo-diffusive medium with two-temperature and micro-concentrations

Author:

Sheoran Devender,Kumar Ramesh,Kumar Sunil,Kalkal Kapil Kumar

Abstract

Purpose The purpose of this paper is to study the reflection of plane waves in an initially stressed rotating thermoelastic diffusive medium with micro-concentrations and two-temperature. Design/methodology/approach A two-dimensional model of generalized thermoelasticity is considered. The governing equations are transformed into the non-dimensional forms using the dimensionless variables. Then, potential functions are introduced for the decoupling of the waves. Further, appropriate boundary conditions are assumed to completely solve the problem. Finally, numerical computations are performed using MATLAB. Findings The problem is solved analytically and it is found that there exist five coupled waves in addition to an independent micro-concentration wave in the considered medium. The amplitude ratios and energy ratios of these reflected waves have also been computed numerically for a specific material. Originality/value The modulus values of amplitude ratios are presented graphically to exhibit the effects of angular velocity, initial stress, two-temperature, diffusion and micro-concentration parameters. The expressions of energy ratios obtained in explicit form are also depicted graphically as functions of angle of incidence. The law of conservation of energy at the free surface during reflection phenomenon is also verified.

Publisher

Emerald

Subject

Applied Mathematics,Computer Science Applications,Mechanical Engineering,Mechanics of Materials

Reference41 articles.

1. Rotation and magnetic field effects on surface wave propagation in an elastic layer lying over a generalized thermoelastic diffusive half-space with imperfect boundary;Mathematical Problems in Engineering,2015

2. GL model on reflection of P and SV waves from the surface of thermoelastic diffusion solid under influence of the electromagnetic field and initial stress;Journal of Thermal Stresses,2014

3. A problem for an infinite elastic body with a spherical cavity in the theory of generalized thermoelastic diffusion;International Journal of Solids and Structures,2007

4. A thermoelastic diffusion theory with microtemperatures and microconcentrations;Journal of Thermal Stresses,2017

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