Abstract

Porous domain filled with nanoliquid was scrutinized in the current article. Magnetic force and permeability were considered as main effective variables, and their influences were involved in momentum. Also, energy equation has a source term related to radiation. Outputs were achieved with CVFEM simulation. As permeability augments, forces against the flow decline. So, stronger eddy appears and temperature gradient augments. Structure of fluid gets affected more significantly by Ha when permeability increases. Nu increases by increments of Da related to greater velocity of nanomaterial, and similar tendency for Nu has been reported with rise of Ra. With intensification of Ha, Nu reduces because of lower distortion of isotherms. The adverse impact of Lorentz force reduces when radiation impact is neglected.

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