Activation energy and convective heat transfer effects on the radiative Williamson nanofluid flow over a radially stretching surface containing Joule heating and …

SK Saini, R Agrawal, P Kaswan - Numerical Heat Transfer, Part A …, 2024 - Taylor & Francis
This article recognizes the time-dependent axisymmetric flow of a non-Newtonian
Williamson fluid caused by a radially stretching surface in the presence of nanoparticles in …

Computational analysis of the magnetized second grade fluid flow using modified Fourier and Fick's Law towards an exponentially stretching sheet

HA Nabwey, AA Khan, M Ashraf, AM Rashad… - Mathematics, 2022 - mdpi.com
Numerical investigation of a chemically reactive second grade fluid flow towards an
exponentially stretching sheet into a porous medium induced by thermal and concentration …

Analysis of bidirectional flow of Williamson micropolar fluid in porous medium with activation energy and thermal radiation

R Agrawal, SK Saini, P Kaswan - Numerical Heat Transfer, Part B …, 2023 - Taylor & Francis
The prime objective of the proposed model is to explore the impacts of viscous dissipation
and Ohmic heating on the bidirectional flow of micropolar and Williamson fluids in porous …

Numerical simulation of entropy generation analysis of MHD hybrid-nanofluid flow with nonlinear thermal radiation and melting heat transfer

M Kumar, P Kaswan, M Kumari - Special Topics & Reviews in …, 2022 - dl.begellhouse.com
This analysis explores the steady-state momentum and radiation heat transfer flow of hybrid
nanofluid flow in a porous medium with melting heat conditions. Furthermore, the analysis of …

Numerical modeling of MHD micropolar fluid flow and melting heat transfer under thermal radiation and Joule heating

R Agrawal, SK Saini, P Kaswan - International Journal for …, 2023 - Taylor & Francis
The purpose of this paper is to discuss the melting heat transfer and flow of a micropolar
fluid due to an exponentially stretching sheet, analogous to ordinary fluid. The impacts of slip …

Magnetohydrodynamics tangent hyperbolic nanofluid flow across a vertical stretching surface using Levengberg-Marquardt back propagation artificial neural networks

B Ali, S Liu, HJ Liu, MIH Siddiqui - Numerical Heat Transfer, Part A …, 2024 - Taylor & Francis
This analysis uses the Levenberg-Marquardt back propagation artificial neural networks (LM-
BP-ANNs) approach to demonstrate the mathematical strategy of neural networks for the …

A comparative analysis of the stagnation-point flow of Williamson and Maxwell nanofluid over shrinking surface with heat source, thermal, and concentration slip …

SK Saini, R Agrawal - Thermal Advances, 2024 - Elsevier
This study tackles the contrasting evaluation of Williamson and Maxwell nanofluid flow over
a shrinking surface with heat source and thermal radiation. Surface considerations also …