Galerkin finite-element simulation of penta hybrid nano convective slip flow with double microorganism past radiative-convective surfaces in porous medium

The boundary-layer equations governing the bio-nano-convective slip flow saturated with Darcy porous medium under radiative-convective wall boundary conditions will be transformed into a system of similarity/non-similarity equations using appropriate coordinate transformations. The transformed equations will then be simulated using the Galerkin finite element method. The effects of the controlling parameters on the quantities of practical interest such as friction, heat transfer rate, nanoparticle volume fraction (NPVF) transfer rate, and motile microorganism transfer rate, will be investigated.

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