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Influence of variable fluid properties on mixed convective Darcy–Forchheimer flow relation over a surface with Soret and Dufour spectacle

Shuguang LiSchool of Computer Science and Technology, Shandong Technology and Business University , Yantai 264005 , ChinaM. Ijaz KhanDepartment of Mechanical Engineering, Lebanese American University , Beirut , LebanonShahid AliSchool of Electronics Engineering, Peking University , Beijing 100871 , ChinaSami Ullah KhanDepartment of Mathematics, Namal University , Mianwali 42250 , PakistanSaja Abdulrahman AlthobaitiDepartment of Chemistry, College of Arts and Science, Prince Sattam Bin Abdulaziz University , Wadi Addawasir 18510 , Saudi ArabiaIlyas KhanDepartment of Mathematics, College of Science Al-Zulfi, Majmaah University , Al-Majmaah , 11952 , Saudi ArabiaFaris AlqurashiDepartment of Mechanical Engineering, College of Engineering, University of Bisha , P.O. Box 001 , Bisha , Saudi ArabiaMohamed KchaouDepartment of Mechanical Engineering, College of Engineering, University of Bisha , P.O. Box 001 , Bisha , Saudi Arabia
2024en
ABI

Аннотация

Abstract The thermo-diffusion applications of nanofluid subject to variable thermal sources have been presented. The significance of Darcy–Forchheimer effects is attributed. The flow comprises the mixed convection and viscous dissipation effects. Furthermore, the variable influence of viscosity, thermal conductivity, and mass diffusivity is treated to analyze the flow. The analysis of problem is referred to convective mass and thermal constraints. The analytical simulations are proceeded with homotopy analysis method. The convergence region is highlighted. Novel physical contribution of parameters is visualized and treated graphically. It is noted that larger Brinkman number leads to improvement in heat transfer. The concentration pattern boosted due to Soret number. The wall shear force enhances with Hartmann number and variable thermal conductivity coefficient.

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