Some problems in generalized electromagnetic thermoelasticity and wave propagation
- 1. Nuclear Research Center, Atomic Energy Authority, Cairo (Egypt)
Description
The first chapter contains a review of the classical theory of elasticity, the theory of thermodynamics, the theory of uncoupled thermoelasticity, the coupled theory of thermoelasticity, the generalized theory of thermoelasticity with one relaxation time, electromagneto thermoelasticity and an introduction to wave propagation in elastic media. Chapter two is devoted to the study of wave propagation for a problem of an infinitely long solid conducting circular cylinder whose lateral surface is traction free and subjected to a known surrounding temperatures in the presence of a uniform magnetic field in the direction of the axis of the cylinder. Laplace transform techniques are used to derive the solution in the Laplace transform domain. The inversion process is carried out using asymptotic expansions valid for short tines. Numerical results are computed for the temperature, displacement, stress,induced magnetic field and induced electric field distributions. The chapter contains also a study of the wave propagation in the elastic medium. In chapter three, we consider the two-dimensional problem of an infinitely long conducting solid cylinder. The lateral surface of the cylinder is taken to be traction free and is subjected to a known temperature distribution independent of z in the presence of a uniform magnetic field in the direction of the axis of the cylinder. Laplace transform techniques are used. The inversion process is carried out using a numerical method based on Fourier series expansions. Numerical results are computed and represented graphically. The chapter contains also a study of the wave propagation in the elastic medium. In chapter four, we consider a two-dimensional problem for an infinity long cylinder. The lateral surface of the cylinder is taken to be traction free and is subjected to a known temperature distribution independent of φ in the presence of a uniform electric field in the direction of the binomial of the cylinder axis. Laplace and Fourier transform techniques are used to derive the solution using the variation of parameters method. The inverse transforms are obtained by using the inversion formula of the exponential Fourier transform together with a numerical method to invert the Laplace transform. Numerical results are computed and represented graphically. In chapter five, we study the propagation of Rayleigh surface waves in a thermoelastic half space permeated by a uniform magnetic field. Numerical results are computed for attenuation coefficient, phase velocity, amplitude of temperature, displacement, stress, induced magnetic field and the induced electric field. Numerical results are represented graphically.
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Additional details
Publishing Information
- Imprint Pagination
- 153 p.
- Report number
- INIS-EG--450
INIS
- Country of Publication
- Egypt
- Country of Input or Organization
- Egypt
- INIS RN
- 46131666
- Subject category
- S71: CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS;
- Resource subtype / Literary indicator
- Thesis, Numerical Data
- Descriptors DEI
- AMPLITUDES; ATTENUATION; CYLINDERS; ELECTRIC FIELDS; ELECTROMAGNETISM; FOURIER TRANSFORMATION; LAPLACE TRANSFORMATION; MAGNETIC FIELDS; NUMERICAL ANALYSIS; NUMERICAL DATA; PHASE VELOCITY; RAYLEIGH WAVES; RELAXATION TIME; THERMOELASTICITY; VARIATIONS; WAVE PROPAGATION
- Descriptors DEC
- DATA; ELASTICITY; INFORMATION; INTEGRAL TRANSFORMATIONS; MAGNETISM; MATHEMATICS; MECHANICAL PROPERTIES; TRANSFORMATIONS; VELOCITY
Optional Information
- Notes
- 2-1 tabs.,5-8 figs.,61 refs.