[HTML][HTML] Combined effects of Joule heating and non-uniform heat source/sink on unsteady MHD mixed convective flow over a vertical stretching surface embedded in …

BK Sharma, R Gandhi - Propulsion and Power Research, 2022 - Elsevier
This paper deals with an unsteady magnetohydrodynamics (MHD) heat and mass transfer
for a viscous incompressible fluid through a vertical stretching surface embedded in a Darcy …

Micropolar nanofluid flow with MHD and viscous dissipation effects towards a stretching sheet with multimedia feature

KL Hsiao - International Journal of Heat and Mass Transfer, 2017 - Elsevier
An applied thermal system for heat and mass transfer and energy management problem of
hydromagnetic flow with magnetic and viscous dissipation effects micropolar nanofluids …

[HTML][HTML] Entropy generation minimization of higher-order endothermic/exothermic chemical reaction with activation energy on MHD mixed convective flow over a …

BK Sharma, R Gandhi, NK Mishra, QM Al-Mdallal - Scientific reports, 2022 - nature.com
The present investigation aims to analyze higher-order endothermic/exothermic chemical
reactions with activation energy by considering thermophoresis and Brownian motion effects …

[PDF][PDF] Heat transport and magnetohydrodynamic hybrid micropolar ferrofluid flow over a non-linearly stretching sheet

A Rauf, NA Shah, A Mushtaq, T Botmart - AIMS Math, 2023 - academia.edu
Heat transport and magnetohydrodynamic hybrid micropolar ferrofluid flow over a non-linearly
stretching sheet Page 1 AIMS Mathematics, 8(1): 164–193. DOI: 10.3934/math.2023008 …

[HTML][HTML] MHD stagnation point flow of nanofluid over a curved stretching/shrinking surface subject to the influence of Joule heating and convective condition

XH Zhang, A Abidi, AES Ahmed, MR Khan… - Case Studies in Thermal …, 2021 - Elsevier
The existing article explores the attributes of convection and Joule heating across a
magnetohydrodynamics two-dimensional stagnation point flow of a nano liquid depending …

[HTML][HTML] The numerical simulation of nanoparticle size and thermal radiation with the magnetic field effect based on tangent hyperbolic nanofluid flow

P Kumar, H Poonia, L Ali, S Areekara - Case Studies in Thermal …, 2022 - Elsevier
Tiny particles have extraordinary thermal conductivity due to their unusual characteristics,
making them crucial in materials science, nanotechnology, heat exchangers, and …

Numerical computing paradigm for investigation of micropolar nanofluid flow between parallel plates system with impact of electrical MHD and Hall current

SE Awan, MAZ Raja, F Gul, ZA Khan… - Arabian Journal for …, 2021 - Springer
The current study develops a novel application of numerical computing paradigm to inspect
the cumulative effects of both electric and magnetic field on a micropolar nanofluid bounded …

[HTML][HTML] Influence of buoyancy and viscous dissipation effects on 3D magneto hydrodynamic viscous hybrid nano fluid (MgO− TiO2) under slip conditions

S Li, S Akbar, M Sohail, U Nazir, A Singh… - Case Studies in Thermal …, 2023 - Elsevier
Owing to its bounteous applications in engineering and advanced industrial processes
magnetized hybrid Nano fluid influenced by suspended Nano-size particles got unusual …

Evaluating the unsteady MHD micropolar fluid flow past stretching/shirking sheet with heat source and thermal radiation: Implementing fourth order predictor–corrector …

MM Khader, RP Sharma - Mathematics and Computers in Simulation, 2021 - Elsevier
The idea of the current investigation is to analyze the effect of thermal radiation and non-
uniform heat source/sink on unsteady MHD micropolar fluid flow past a stretching/shirking …

The optimization of heat transfer in thermally convective micropolar-based nanofluid flow by the influence of nanoparticle's diameter and nanolayer via stretching …

L Ali, P Kumar, Z Iqbal, SE Alhazmi… - Journal of Non …, 2023 - degruyter.com
The proposed study demonstrates the flow phenomenon and thermo-variation of a
magnetized stretching sheet induced-radiative nanofluid flow. By incorporating the response …