Nanofluid Flow and Heat Transfer
This cluster of papers focuses on the heat transfer enhancement in nanofluids, exploring topics such as thermal conductivity, convective transport, experimental investigations, and the impact of magnetic fields. It includes reviews, applications, and studies on viscosity in the context of nanofluid heat transfer.
Papers listed on taxonomy pages are the top few works per node from the OpenAlex snapshot. That list is not exhaustive and is not an endorsement. The topic map and the journal registry remain separate: there is still no authoritative topic-to-venue or topic-to-organization edge. Search is a lexical lookup, not a claim that a venue publishes a topic.
Most cited
- A treatise on electricity and magnetism
- Convective Transport in Nanofluids
- Investigation on Convective Heat Transfer and Flow Features of Nanofluids
- HYDRODYNAMIC AND HEAT TRANSFER STUDY OF DISPERSED FLUIDS WITH SUBMICRON METALLIC OXIDE PARTICLES
- Anomalously increased effective thermal conductivities of ethylene glycol-based nanofluids containing copper nanoparticles
- Flow past a stretching plate
Most recent
- A novel investigation of thermo-bioconvection in oxytactic bacteria combined with tri-hybrid nanostructures under a spatially varying magnetic field: a machine learning approach
- Cattaneo–Christov modelling of hybrid nanofluid stagnation-point flow over a rotating stretching disk with magneto-thermal coupling and entropy generation
- Heat transfer enhancement in non-Newtonian fluids using a rotating cylinder and nanoparticles
- Mathematical investigation on MHD blood flow through a stenosed artery under variable viscosity and body acceleration
- Radiation effects on stagnation point flow of the ternary hybrid nanofluid with surface tension gradient and viscous dissipation using the artificial neural network
- FLAML-ANN prediction of heat transfer in hybrid nanofluid flow over a porous spinning disk