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Thermoelastic micro-stretch solid immersed in an infinite inviscid fluid and subject to a rotation under two theories
Faculty
Science
Year:
2023
Type of Publication:
ZU Hosted
Pages:
299-310
Authors:
Mohamed Ibrahim Ahmed Othman
Staff Zu Site
Abstract In Staff Site
Journal:
Engineering Solid Mechanics Growing Science Ltd.
Volume:
11
Keywords :
Thermoelastic micro-stretch solid immersed , , infinite inviscid
Abstract:
This work is interested with a thermoelastic response in a micro-stretch half-space submerged in an unlimited non-viscous fluid under rotation, the medium is studied using the theory of Green-Naghdi (G-N III) and the model of three-phase-lag (3PHL). The governing equations are formulated in the context of G-N theory and the 3PHL model. Analytical solution to the problem is acquired by utilizing the normal mode method. The magnesium crystal element is utilized as an application to compare the predictions induced by rotation on microstretch thermoelastic immersed in an infinite fluid of G–N theory with those for the 3PHL model. Rotation has been noticed to have a major effect on all physical quantities. Comparisons were also made for three values of wave number b and three values of the real part frequency ω0.
Author Related Publications
Mohamed Ibrahim Ahmed Othman, "Effect of Magnetic Field on Thermoelastic Micro-Elongated Solid with Diffusion under Dual-Phase-Lag Model", World Scientific Publishing Company, 2021
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Mohamed Ibrahim Ahmed Othman, "Refined multi-phase-lags theory and Thomson effect on a micropolar thermoelastic medium with voids", Elsevier, 2021
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Mohamed Ibrahim Ahmed Othman, "Thermoelastic Theories on the Refracted Waves in Microstretch Thermoelastic Diffusion Media", World Scienti¯c Publishing Company, 2022
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Mohamed Ibrahim Ahmed Othman, "On the Effect of Thomson and Initial Stress in a Thermo-Porous Elastic Solid under G-N Electromagnetic Theory", www.mdpi.com/journal/symmetry, 2019
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Mohamed Ibrahim Ahmed Othman, "Analysis on plane waves through magneto-thermoelastic microstretch rotating medium with temperature dependent elastic properties", ElSevier, 2018
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