Quadratic regression analysis for nonlinear heat source/sink and mathematical Fourier heat law influences on Reiner-Philippoff hybrid nanofluid flow applying …

T Sajid, W Jamshed, RW Ibrahim, MR Eid… - Journal of Magnetism …, 2023 - Elsevier
Background Scientists across the world have tried to explore the effect of non-Newtonian
fluids moving over a symmetric stretchable sheet with the presence of diverse influences …

[HTML][HTML] Features of hybridized AA7072 and AA7075 alloys nanomaterials with melting heat transfer past a movable cylinder with Thompson and Troian slip effect

U Khan, A Zaib, A Ishak, SM Eldin, AM Alotaibi… - Arabian Journal of …, 2023 - Elsevier
A number of scientists have indicated interest in the promising area of research that involves
improving heat transmission by utilizing nanoparticles. The dynamic properties of nanofluids …

On Powell-Eyring hybridity nanofluidic flow based Carboxy-Methyl-Cellulose (CMC) with solar thermal radiation: A quadratic regression estimation

N Islam, AA Pasha, W Jamshed, RW Ibrahim… - … Communications in Heat …, 2022 - Elsevier
Examining the thorough double-hybrid nanofluid mode Yamada-Ota and Xue provide a
detailed description of the Powell-Eyring fluid model (PEFM) with the grou** of the base …

Mixed convection flow of an electrically conducting viscoelastic fluid past a vertical nonlinearly stretching sheet

AB Jafar, S Shafie, I Ullah, R Safdar, W Jamshed… - Scientific reports, 2022 - nature.com
The study of hydromagnetic mixed convection flow of viscoelastic fluid caused by a vertical
stretched surface is presented in this paper. According to this theory, the stretching velocity …

[HTML][HTML] Bidirectional radiative transport of magnetic Maxwell nanofluid mobilized by Arrhenius energy and prescribed thermal/concentration conditions: significance of …

M Faisal, F Mabood, KK Asogwa… - Ain Shams Engineering …, 2023 - Elsevier
Prescribed thermal/concentration conditions features for bidirectional radiative transport of
magnetic Maxwell nanofluid with Ludwig-Soret and pedesis effects are discussed. Arrhenius …

Numerical study for temperature-dependent viscosity based unsteady flow of GP-MoS2/C2H6O2-H2O over a porous stretching sheet

T Gupta, AK Pandey, M Kumar - Numerical Heat Transfer, Part A …, 2024 - Taylor & Francis
The theme of this research is to attain the numerical solution of magnetized GP-
MoS2/C2H6O2-H2O unsteady flow over a stretching surface, using Legendre Wavelet …

[HTML][HTML] Homogeneous-heterogeneous reactions in MHD mixed convection fluid flow between concentric cylinders with heat generation and heat absorption

Z Abbas, I Mehdi, J Hasnain, AK Alzahrani… - Case Studies in Thermal …, 2023 - Elsevier
In this article homogeneous-heterogeneous (HH) reactions within MHD mixed convection
flow on viscous fluid having the characteristic of heat generation/absorption between …

[HTML][HTML] Thermal energy investigation of magneto-hydrodynamic nano-material liquid flow over a stretching sheet: Comparison of single and composite particles

M Arshad, A Hussain, A Hassan, P Wróblewski… - Alexandria Engineering …, 2022 - Elsevier
The foremost purpose of the current study is to examine the heat transmission characteristics
of two-phase and hybrid phase rotating nanofluid flow in three dimension over the …

Numerical simulations of heat generation, thermal radiation and thermal transport in water-based nanoparticles: OHAM study

F Waseem, M Sohail, SA Lone, G Chambashi - Scientific Reports, 2023 - nature.com
This study investigates the 3D flow properties and heat transfer of copper, titanium/water
nanofluids across a bidirectional surface under the impact of MHD. The thermophysical …

Entropy analysis of magneto-radiative SWCNT-MWCNT/H2O hybrid nanofluid flow with slip boundary conditions

G Mandal, D Pal - International Journal of Ambient Energy, 2023 - Taylor & Francis
In the presence of nonlinear thermal radiation, viscous dissipation, and heat source/sink, this
paper investigates the impact of entropy generation and heat transfer on the flow of single …