The effect of magnetic field and inclined load on a poro-thermoelastic medium using the three-phase-lag model

Faculty Science Year: 2024
Type of Publication: ZU Hosted Pages:
Authors:
Journal: Geomechanics and Engineering, techno press Volume:
Keywords : , effect , magnetic field , inclined load , , poro-thermoelastic    
Abstract:
In the current work, a poro-thermoelastic half-space issue with temperature-dependent characteristics and an inclined load is examined in the framework of the three-phase-lag model (3PHL) while taking into account the effects of magnetic and gravity fields. The resulting coupled governing equations are non-dimensional and are solved by normal mode analysis. To investigate the impacts of the gravitational field, magnetic field, inclined load, and an empirical material constant, numerical findings are graphically displayed. MATLAB software is used for numerical calculations. Graphs are used to visualize and analyze the computational findings. It is found that the physical quantities are affected by the magnetic field, gravity field, the nonlocal parameter, the inclined load, and the empirical material constant.
   
     
 
       

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  • Samia Saeed Mohammed Mohamed Ghoneim Hilal, "Deformation of a rotating two-temperature generalized magneto-thermo-elastic medium with internal heat source due to hydrostatic initial stress.", Meccanica (2015) 50:2077-2091 DOI 10.1007/s11012-015-0136-x, 2015 More
  • Samia Saeed Mohammed Mohamed Ghoneim Hilal, "Gravitational effect on a fiber-reinforced thermoelastic medium with temperature-dependent properties for two different theories.", Iran J Sci Technol Trans Mech Eng (2016) 40:223-232 DOI 10.1007/s40997-016-0014-8, 2016 More
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  • Samia Saeed Mohammed Mohamed Ghoneim Hilal, "2D problem of magneto-thermoelasticity fiber-reinforced medium under temperature dependent properties with three-phase-lag model", Meccanica (2014) 49:1225-1241 DOI 10.1007/s11012-014-9879-z, 2014 More
  • Samia Saeed Mohammed Mohamed Ghoneim Hilal, "Wave Propagation in a Magneto-Micropolar Thermoelastic Medium with Two Temperatures for Three-Phase-Lag Model", CMC, vol.52, no.1, pp.1-24, 2016, 2016 More

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