@misc{Yuvaraju_Namala_Effect, author={Yuvaraju, Namala and Hymavathi, Dyapa}, howpublished={online}, publisher={Zielona Góra: Uniwersytet Zielonogórski}, language={eng}, abstract={The purpose of this study is to use computational tools to evaluate the effects of Joule heating, chemical reactions and melting on heat and mass transfer of a non-Newtonian Casson nano fluid flow across a porous stretched surface. The governing equations containing partial derivatives are consistent with nonlinear ordinary differential equations. The transformations are subject to the similarity variable, which is employed in the equations` solution. To generate approximate answers, a numerical method based on the Shoot technique and the Runge-Kutta method is used.}, abstract={A graphic representation of the velocity, temperature, and concentration distributions is shown. Additionally defined for specific parameter values are skin friction, Nusselt number, and Sherwood number. According to the study`s key findings, boosting the Joule heating parameter enhances the temperature profiles, increasing Magnetic and Permeability parameters decreases velocity but increases temperature. Porous material is found to have a considerable effect on the problem`s flow and thermal properties. When the current analysis findings are compared to the existing literature in specific settings, better agreement is observed.}, title={Effect of Chemical Reaction on Heat and Mass transfer of Porous MHD Casson Nano Fluid with Melting and Joule heating}, type={artykuł}, keywords={Casson nano fluid, chemical reaction, melting, Joule heating, stretching surface}, }