Pages that link to "Item:Q2379405"
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The following pages link to Direct numerical simulation of thermal conductivity of nanofluids: the effect of temperature two-way coupling and coagulation of particles (Q2379405):
Displaying 16 items.
- Study for the particle's scale effect on some thermophysical properties of nanofluids by a simplified molecular dynamics method (Q443244) (← links)
- The role of several heat transfer mechanisms on the enhancement of thermal conductivity in nanofluids (Q510791) (← links)
- Molecular dynamics simulation of nanofluid's effective thermal conductivity in high-shear-rate Couette flow (Q547626) (← links)
- Impact analysis of natural convection on thermal conductivity measurements of nanofluids using the transient hot-wire method (Q550750) (← links)
- Thermal conductivity of non-Newtonian nanofluids: experimental data and modeling using neural network (Q631126) (← links)
- Temperature-dependent aggregation and diffusion in nanofluids (Q632533) (← links)
- The combined analysis of phonon and electron heat transfer mechanism on thermal conductivity for nanofluids (Q955739) (← links)
- Effect of interfacial nanolayer on the effective thermal conductivity of nanoparticle-fluid mixture (Q978250) (← links)
- Experimental determination of thermal conductivity of three nanofluids and development of new correlations (Q1038150) (← links)
- A prediction model for the effective thermal conductivity of nanofluids considering agglomeration and the radial distribution function of nanoparticles (Q1633032) (← links)
- Molecular dynamics simulations on the shear viscosity of \(\mathrm{Al}_{2}\mathrm O_{3}\) nanofluids (Q1645812) (← links)
- Cubic-interpolated pseudo-particle model to predict thermal behavior of a nanofluid (Q1649652) (← links)
- Finite-volume lattice Boltzmann modeling of thermal transport in nanofluids (Q2446503) (← links)
- Mixing effect on the enhancement of the effective thermal conductivity of nanoparticle suspensions (nanofluids) (Q2462705) (← links)
- Numerical analysis of percolation formation in carbon nanotube based nanofluids (Q2952309) (← links)
- Numerical investigation of nanofluid particle migration and convective heat transfer in microchannels using an Eulerian–Lagrangian approach (Q5235673) (← links)