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Modeling and analysis of heat and mass transport in chemically reactive darcy−forchheimer flow of micropolar fluid with activation energy

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dc.contributor.author Sharma, Bhupendra Kumar
dc.date.accessioned 2025-09-19T08:49:59Z
dc.date.available 2025-09-19T08:49:59Z
dc.date.issued 2025-07
dc.identifier.uri https://www.dl.begellhouse.com/journals/3d21681c18f5b5e7,0cedcd8758051024,377ebe210668cadb.html
dc.identifier.uri http://dspace.bits-pilani.ac.in:8080/jspui/handle/123456789/19469
dc.description.abstract The current study focuses on the temperature and mass distributions in the flow of exponentially heated, chemically reactive micropolar fluid over a horizontal porous stretching sheet within Darcy−Forchheimer porous medium with activation energy and viscous dissipation. The governing partial differential equations are transformed using similarity transformations and converted into a set of ordinary differential equations. Reduced ordinary differential equations are solved by similarity analysis through the bvp4c tool in MATLAB. This study examines how the transition in temperature, mass, and velocity of fluid are affected by different physical parameters. To enhance the overall transfer process, the concentration, temperature, and velocity distributions are discussed for the physical parameters. The study investigates the behavior of magnetohydrodynamic (MHD) micropolar fluids under varying physical parameters. Results indicate that an increase in the magnetic parameter enhances the temperature profile, while a rise in the porosity parameter decreases the velocity distribution. An enhancement in temperature distributions is observed with the rise of exponential heat source and thermal-dependent heat source. Furthermore, mass transfer improves with higher activation energy. These findings underscore the potential of MHD micropolar fluids in engineering applications such as oil exploration, geothermal energy extraction, and nuclear reactor cooling systems. en_US
dc.language.iso en en_US
dc.publisher Begell House en_US
dc.subject Mathematics en_US
dc.subject Exponentially heated micropolar fluid en_US
dc.subject Darcy–Forchheimer porous medium en_US
dc.subject Chemically reactive fluid flow en_US
dc.subject Magnetohydrodynamics (MHD) en_US
dc.subject Porous stretching sheet en_US
dc.title Modeling and analysis of heat and mass transport in chemically reactive darcy−forchheimer flow of micropolar fluid with activation energy en_US
dc.type Article en_US


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