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Multiple slip effects of MHD boundary-layer motion of a Casson nanoliquid over a penetrable linearly stretching sheet embedded in non-Darcian porous medium

Patil PriyankaDepartment of Mathematics, Vishwakarma University, Kondhwa (BK), Pune 411048, Maharashtra, IndiaShaimaa A. M. AbdelmohsenDepartment of Physics, College of Science, Princess Nourah bint Abdulrahman University, P.O. Box 84428, Riyadh 11671, Saudi ArabiaJagadish V. TawadeDepartment of Mathematics, Vishwakarma University, Kondhwa (BK), Pune 411048, Maharashtra, IndiaAbdelbacki M. M. AshrafPlant Pathology Department, Faculty of Agriculture, Cairo University, Giza 12613, EgyptRaman KumarDepartment of Mechanical Engineering and University Centre for Research & Development, Chandigarh University, Mohali 140413, Punjab, IndiaMahadev Biradar
2022en
ABI

Annotatsiya

The particular exploration includes the two-dimensional Casson nanoliquid motion predicaments, adjacent to the boundary level over the stretching sheet via non-Darcian porous medium. A particular computational description is given for the governing boundary value problem pertaining to nonlinear partial differential equations relating to momentum, thermal and mass transfer which are computed by fourth-order Runge–Kutta and shooting approaches. The brunt of several parameters like viscous dissipations, magnetic field, porous parameter, thermal diffusivity, Brownian diffusion coefficient and Casson fluid parameter on momentum, heat as well as mass transfer is explored. Moreover, it was noticed that liquid motion is repelled by the Forchheimerr parametric quantity resulting in a reduction in velocity magnitude, within the boundary layer, whereas in the thermic boundary layer, there is an increase in the thermal profile. Furthermore, when the value of the Brownian motion parameter increases, the axial velocity drops, but the thermophoresis parameter is said to have the opposite effect.

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