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Effects of activation energy and chemical reaction on unsteady MHD dissipative Darcy–Forchheimer squeezed flow of Casson fluid over horizontal channel

Shuguang LiSchool of Computer Science and Technology, Shandong Technology and Business University, Yantai, 264005, ChinaRaghunath KodiSt John's College of Engineering and Technology, Yemmiganur, Kurnool District, Andhra Pradesh, 518360, IndiaAyman AlfalehCollege of Engineering, Industrial Engineering Department, Umm Al-Qura University, 28821, Al-Khalidiya District, Al-Qunfudhah City, Kingdom of Saudi ArabiaFarhan AliDepartment of Mathematical Sciences, Federal Urdu University of Arts, Sciences & Technology, Gulshan-e-Iqbal Karachi, 7530, PakistanAurang ZaibDepartment of Mathematical Sciences, Federal Urdu University of Arts, Sciences & Technology, Gulshan-e-Iqbal Karachi, 7530, PakistanM. Ijaz KhanDepartment of Mathematics and Statistics, Riphah International University I-14, Islamabad, 44000, Pakistan. [email protected]Sayed M. EldinCenter of Research, Faculty of Engineering, Future University in Egypt, New Cairo, 11835, EgyptV. PuneethDepartment of Computational Science, CHRIST (Deemed to Be University), Ghaziabad, 201003, India
2023en
ABI

Аннотация

The impact of chemical reaction and activation energy plays a vital role in the analysis of fluid dynamics and its thermal properties. The application of the flow of fluid is significantly considered in nuclear reactors, automobiles, manufacturing setups, electronic appliances etc. This study explores the impacts of activation energy and chemical reaction on the magnetohydrodynamic Darcy-Forchheimer squeezed Casson fluid flow through a porous material across the horizontal channel where the two parallel plates are assumed to be in motion. By using similarity variables, partial differential equations are converted to ordinary differential equations. Numerical method is applied using MATLAB to solve the problems and acquire the data for velocity field, thermal distribution, and concentration distribution. The graphs indicate that fluid velocity and temperature increases as the plates are brought closer. In addition, there was a correlation between a rise in the Hartmann number and a decrease in the fluid's velocity because of the existence of strong Lorentz forces. The temperature and the concentration of the liquid will increase due to the Brownian motion. When the Darcy-Forchheimer and activation energy parameters are both increased, the velocity and concentration decreases.

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