Numerical investigations of thermal radiation and activation energy imparts on chemically reactive Maxwell fluid flow over an exothermal stretching sheet in a porous medium
DOI10.1007/S40819-022-01356-8zbMath1498.76103OpenAlexW4281846507MaRDI QIDQ2149371
Publication date: 28 June 2022
Published in: International Journal of Applied and Computational Mathematics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s40819-022-01356-8
permeability parametertemperature-dependent viscosityFrank-Kamenetskii parameterautocatalytic stretching sheetfourth-order Runge-Kutta-Fehlberg scheme
Flows in porous media; filtration; seepage (76S05) Finite difference methods applied to problems in fluid mechanics (76M20) Viscoelastic fluids (76A10) Reaction effects in flows (76V05) Diffusive and convective heat and mass transfer, heat flow (80A19) Radiative heat transfer (80A21)
Cites Work
- Unnamed Item
- Analysis of active and passive control of nanoparticles in viscoelastic nanomaterial inspired by activation energy and chemical reaction
- MHD flow and heat transfer over vertical stretching sheet with heat sink or source effect
- MHD flow and mass transfer of chemically reactive upper convected Maxwell fluid past porous surface
- Transportation of magnetite nanofluid flow and heat transfer over a rotating porous disk with Arrhenius activation energy: fourth order Noumerov's method
This page was built for publication: Numerical investigations of thermal radiation and activation energy imparts on chemically reactive Maxwell fluid flow over an exothermal stretching sheet in a porous medium