Modeling and predicting heat transfer performance in bioconvection flow around a circular cylinder using an artificial neural network approach

MIU Rehman, H Chen, MI Khan, A Hamid… - Tribology …, 2024 - Elsevier
The current research aims to study the heat transfer rate in mixed convection flow of viscous
fluid along a vertical cylinder containing swimming microorganisms and velocity slip effects …

[HTML][HTML] Optimization of heat and mass transfer in chemically radiative nanofluids using Cattaneo-Christov fluxes and advanced machine learning techniques

S Habib, S Nasir, Z Khan, AS Berrouk, W Khan… - Ain Shams Engineering …, 2024 - Elsevier
This paper investigates the effects of heat radiation and magnetic forces on the motion of a
viscous nanofluid across a stretched sheet. Cattaneo-Christov fluxes are utilized in this …

Analysis of the thermal distribution of a porous radial fin influenced by an inclined magnetic field with neural computing

S Habib, Waseem, Z Khan, S Boulaaras, M Rahman… - Scientific Reports, 2024 - nature.com
Fins and radial fins are versatile engineering components that significantly enhance heat
transfer and thermal management in diverse applications, hence improving efficiency and …

Artificial neural network analysis of MHD Maxwell nanofluid flow over a porous medium in presence of Joule heating and nonlinear radiation effects

MI Afridi, B Almohsen, S Habib, Z Khan… - Chaos, Solitons & …, 2025 - Elsevier
This study utilized a novel Artificial Neural Network methodology to examine the
magnetohydrodynamic flow of a Maxwell nanofluid over a stretching surface situated in a …

Novel artificial neural network approach for hybrid nanofluid flow over nonlinear permeable stretching sheets with Thomson and Troian boundary conditions

S Habib, Z Khan, EN Thabet, AM Abd-Alla… - International Journal of …, 2025 - Elsevier
The study investigates the flow of a hybrid nanofluid over a non-linear, permeable stretched
sheet under Thomson and Troian boundary conditions, while also considering the Darcy …