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In the present work, hydrogen exfoliated graphene (HEG) dispersed deionized (DI) water, and ethylene glycol (EG) based nanofluids were developed.
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In order to understand the effects of nanofluids upon boiling, pool boiling experiments involving both pure water and water based nanofluids were investigated.
In the present paper, using the Vaschy Buckingham theorem, new correlations for predicting the thermal conductivity of nanofluids were developed based on the existing experimental data.
Ionic liquid based nanofluids are a very new and novel class of fluids used for heat transfer.
Al2O3 and MWCNT based nanofluids are used as working fluids in the analysis.
The enhancement in Nusselts number for EG based nanofluids are higher than that of DI water based nanofluids.
Pure water and Al2O3-water based nanofluid are used as working fluids.
Total thermal resistance of the heat pipe for pure water and Al2O3-water based nanofluid is also predicted.
Considering interaction forces (gravity and buoyancy force, drag force, interaction potential force, and Brownian force) between nanoparticles and a base fluid, a two-phase Lattice Boltzmann model for natural convection of nanofluid is developed in this work.
In this study, different nanofluids with phase change behavior were developed by mixing a molten salt base fluid (selected as phase change material) with nanoparticles using the direct-synthesis method.
In this study different nanofluids with phase change behavior were developed by mixing a molten salt base fluid (KNO3 selected as phase change material) with nanoparticles using the direct synthesis method.
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