>
Fa   |   Ar   |   En
   a size-dependent non-fourier heat conduction model for magneto-thermoelastic vibration response of nanosystems  
   
نویسنده abouelregal ahmed e. ,civalek ömer ,akgöz bekir
منبع journal of applied and computational mechanics - 2025 - دوره : 11 - شماره : 2 - صفحه:344 -357
چکیده    This study proposes a new fractional model to show how heat transfers through nanomaterials by considering the thermoelastic vibration of one-dimensional nanostructures via nonlocal elasticity theory. size-dependent properties of materials can either give a very high thermal conductivity or explain the heat transfer mechanism in large-scale integrated circuits, which improves the quality of thermoelectric devices. the modified heat conduction model includes two-phase lags and higher-order proportional caputo fractional time derivatives. by applying the dual-phase lag approach, it can be shown that the energy equation can be simplified to regulate the heat transfer rate to the crystal lattice in nanostructured models. the suggested model is employed to investigate the magneto-thermoelastic interactions in a nonlocal solid that undergoes time-dependent periodic heat generation. the sensitivity of various material parameters, such as nonlocal parameters, higher-order derivatives, and fractional operators, is explored in depth for the considered physical fields.
کلیدواژه nano-sized structures ,magneto-thermoelastic interactions ,nonlocal elasticity theory ,proportional caputo derivatives
آدرس jouf university, college of science, department of mathematics, saudi arabia. mansoura university, faculty of science, department of mathematics, egypt, akdeniz university, division of mechanics, civil engineering department, turkey. china medical university, china medical university hospital, department of medical research, taiwan, akdeniz university, division of mechanics, civil engineering department, turkey
پست الکترونیکی bekirakgoz@akdeniz.edu.tr
 
     
   
Authors
  
 
 

Copyright 2023
Islamic World Science Citation Center
All Rights Reserved