Thermal analysis of transverse fluid flow in a gradient porous media with the exponentially boundary conditions

Author:

Jalili Payam1,Mirzaei Amirmohammad2,Jalili Bahram1,Shateri Amirali2,Ganji Davood Domiri2,Ozsahin Dilber Uzun345,Ahmad Hijaz567ORCID

Affiliation:

1. Department of Mechanical Engineering, North Tehran Branch, Islamic Azad University, Tehran, Iran

2. Department of Mechanical Engineering, Babol Noshirvani University of Technology, Babol, Iran

3. Sharjah University, College of Health Sciences, Department of Medical Diagnostic Imaging, United Arab Emirates

4. Research Institute for Medical and Health Sciences, University of Sharjah, Sharjah 27272, United Arab Emirates

5. Near East University, Operational Research Center in Healthcare, Nicosia 99138, TRNC Mersin 10, Turkey

6. Department of Mathematics, Faculty of Science, Islamic University of Madinah, Medina, 42210, Saudi Arabia

7. Department of Computer Science and Mathematics, Lebanese American University, Beirut, Lebanon

Abstract

In this study, a numerical investigation was conducted on the thermal analysis of transverse fluid flow in a gradient porous medium with exponential boundary conditions. By solving a two-dimensional system of dimensionless equations using the Newton–Raphson method and Galerkin finite element technique, the authors studied the effects of cross-diffusion on double-diffusive natural convection in shells. The simulation results for isoconcentrations, isotherms, and stream functions were analyzed for different flow parameters, and it was found that the mean Dufour and Soret numbers were more susceptible to cross-diffusion impacts. The researchers also found that altering the tilt angle of the trapezoidal enclosure can significantly impact flow circulation and temperature gradient, which has important implications for thermal energy control in different technical appliances. This study provides valuable insights into the thermal behavior of fluid flow in porous media, which can aid in the development of more efficient and effective thermal systems.

Publisher

World Scientific Pub Co Pte Ltd

Subject

Condensed Matter Physics,Statistical and Nonlinear Physics

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