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Magneto hydro dynamic Boundary Layer Flow of Nanofluid with Variable Chemical Reaction in a Radiative Vertical Plate

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dc.contributor.author Rahman, Md. Mosfiqur
dc.contributor.author Uddin, Md. Jashim
dc.date.accessioned 2022-03-12T09:45:55Z
dc.date.available 2022-03-12T09:45:55Z
dc.date.issued 2021-07-15
dc.identifier.uri http://dspace.daffodilvarsity.edu.bd:8080/handle/123456789/7455
dc.description.abstract The nanotechnology-based nanofluid has extraordinary prospects in heat transfer engineering. Analysis of these applied nanofluids can yield the appropriate combinations of various useful physical parameters. In the present study, the incompressible boundary layer flow of a nanofluid in the presence of the variable chemical reaction, temperature-dependent viscosity, hydromagnetic force, and the radiation past an infinite vertical plate has been investigated. The governing nanofluid equations are simplified to ordinary differential equations, which are solved using the function bvp4c from MATLAB. The effects of the physical parameters including the similarity parameter, magnetic field, two dimensionless constant temperatures, Schmidt number, local Grashof number, radiation parameter, local chemical reaction parameter, kinematic diffusion parameter, and temperature-independent kinematic diffusion parameter on the velocity, temperature, concentration and the local Nusselt number are demonstrated. The results show that as the magnetic field parameter increases, the heat transfer decreases, and the increase of the radiation parameter yields the opposite effect. The kinematic diffusion and the chemical reaction parameters greatly stimulate the concentration of nanofluid and reduce the heat transfer. en_US
dc.language.iso en_US en_US
dc.publisher Heat Transfer en_US
dc.subject Chemical reaction en_US
dc.subject Nanofluid en_US
dc.subject Magnetohydrodynamic boundary en_US
dc.title Magneto hydro dynamic Boundary Layer Flow of Nanofluid with Variable Chemical Reaction in a Radiative Vertical Plate en_US
dc.type Article en_US


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