Chemically reactive Maxwell nanoliquid flow by a stretching surface in the frames of Newtonian heating, nonlinear convection and radiative flux: Nanopolymer flow processing simulation
نویسندگان
چکیده
Abstract The effects of a chemical reaction and radiative heat flux in nonlinear mixed thermo-solutal convection flow viscoelastic nanoliquid from stretchable surface are investigated theoretically. Newtonian heating is also considered. upper-convected Maxwell (UCM) model deployed to represent the non-Newtonian characteristics. includes influence thermal radiation that simulated via an algebraic model. Buongiorno’s two-component nanofluid implemented for thermophoretic Brownian motion effects. Convective solutal boundary conditions utilized provide more comprehensive evaluation temperature concentration distributions. Dimensionless equations used create by utilizing appropriate parameters. computed models presented through convergent homotopic analysis method (HAM) approach with help Mathematica-12 symbolic software. Authentication HAM solutions special cases literature presented. impact various thermophysical, nanoscale rheological parameters on transport characteristics visualized graphically interpreted detail. Temperatures strongly enhanced thermophoresis Velocity boosted increment Deborah number parameter, hydrodynamic layer thickness reduced. A stronger generative enhances magnitudes, whereas destructive reduces them depletes thickness. Temperature modified conjugate Greater Increasing Schmidt parameter diminish values, they elevate Sherwood i.e. enhance nanoparticle mass transfer rate wall.
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ژورنال
عنوان ژورنال: Nanotechnology reviews
سال: 2022
ISSN: ['2191-9097', '2191-9089']
DOI: https://doi.org/10.1515/ntrev-2022-0078