Thermoelastic Coupling Response of an Unbounded Solid with a Cylindrical Cavity Due to a Moving Heat Source

Zenkour, Ashraf M. and Mashat, Daoud S. and Allehaibi, Ashraf M. (2021) Thermoelastic Coupling Response of an Unbounded Solid with a Cylindrical Cavity Due to a Moving Heat Source. Mathematics, 10 (1). p. 9. ISSN 2227-7390

[thumbnail of mathematics-10-00009-v2.pdf] Text
mathematics-10-00009-v2.pdf - Published Version

Download (31MB)

Abstract

The current article introduces the thermoelastic coupled response of an unbounded solid with a cylindrical hole under a traveling heat source and harmonically altering heat. A refined dual-phase-lag thermoelasticity theory is used for this purpose. A generalized thermoelastic coupled solution is developed by using Laplace’s transforms technique. Field quantities are graphically displayed and discussed to illustrate the effects of heat source, phase-lag parameters, and the angular frequency of thermal vibration on the field quantities. Some comparisons are made with and without the inclusion of a moving heat source. The outcomes described here using the refined dual-phase-lag thermoelasticity theory are the most accurate and are provided as benchmarks for other researchers.

Item Type: Article
Subjects: Journal Eprints > Mathematical Science
Depositing User: Managing Editor
Date Deposited: 13 Dec 2022 10:10
Last Modified: 13 Feb 2024 03:58
URI: http://repository.journal4submission.com/id/eprint/115

Actions (login required)

View Item
View Item