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dc.contributor.authorBaka, Zakaria-
dc.contributor.otherKebli, Belkacem, Directeur de thèse-
dc.date.accessioned2024-12-09T09:51:26Z-
dc.date.available2024-12-09T09:51:26Z-
dc.date.issued2024-
dc.identifier.otherT000455-
dc.identifier.urihttp://repository.enp.edu.dz/jspui/handle/123456789/11166-
dc.descriptionThèse de Doctorat : Génie Mécanique : Alger, Ecole Nationale Polytechnique : 2024fr_FR
dc.description.abstractThis research investigates the thermo-mechanical behavior of cracked media by analyzing heat conduction, elastic and thermoelastic deformations within a medium containing a circular or annular crack. Formulated as mixed boundary value problems, the problems are solved using the Hankel integral transform technique, reducing them to dual or triple integral equations. Solutions are then derived through infinite sets of algebraic equations utilizing some integral relations and Gegenbauer’s addition formulas. Consequently, closed-form expressions for various key parameters are obtained, including thermal and mechanical fields, heat flux intensity factors and mixed mode I-II stress intensity factors. Excellent agreement with numerical simulations and existing results for limiting cases validates the obtained solutions. Selected graphical representations provide valuable insights into the behavior and dependence of these physical quantities on various parameters, such as the size and depth of the crack. This research contributes significantly to the understanding of thermo-mechanical behavior in cracked media. This research significantly contributes to the understanding of heat conduction, elastic and thermoelastic deformations in cracked media.fr_FR
dc.language.isoenfr_FR
dc.subjectHeat conductionfr_FR
dc.subjectThermoelastic deformationfr_FR
dc.subjectCrackfr_FR
dc.subjectMixed boundaryfr_FR
dc.subjectValue problemfr_FR
dc.subjectIntegral equationsfr_FR
dc.subjectStress intensity factorfr_FR
dc.titleThermoelastic deformation of a medium weakened by an annular crackfr_FR
dc.typeThesisfr_FR
Collection(s) :Département Génie Mécanique

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