Theoretical Investigation of a Rotating Thermomagnetic Isotropic Transverse-Constrained Annular Cylinder with Generalized Ohm’s Law Using the Moore–Gibson–Thompson Model of Heat Transfer

نویسندگان

چکیده

On the basis of analysis thermoelastic motion, current research develops a novel model modified thermoelasticity. The rotating long hollow cylinders with fixed surfaces are considered in generalized Moore–Gibson–Thompson (MGTTE) framework, including Ohm’s law. made material that rotates at uniform rotational speed and is elastic transverse direction. set equations for MGT heat conduction new built under influence electromagnetic field by delay time context Green–Naghdi third kind (GN-III). inner boundary cylinder not only restricted but also sensitive to loading. outer surface, on other hand, insulates heat. Laplace transform method utilized deal differential produced domain transfer problem space domain. Dubner Abate used compute dynamically graphically depict theoretical findings an isotropic material. After comparing results several theories, implications discussed.

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ژورنال

عنوان ژورنال: Symmetry

سال: 2023

ISSN: ['0865-4824', '2226-1877']

DOI: https://doi.org/10.3390/sym15030572