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We conclude that ZrO2 is very efficient in terms of inducing strong water-wettability; and ZrO2 based nanofluids have a high potential as EOR agents.
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The above experimental results demonstrated that alumina-based nanofluids have a significant potential in applications.
This result shows that EG based nanofluid has greater viscosity and thermal conductivity compared to water based nanofluid.
Upon close examination, although it was found that MCNT nanofluids have a little higher thermal conductivity increase than Ag nanofluids, which can be found later, Ag nanofluids have a superior cooling performance to that of MCNT nanofluids.
Since the Al2O3 nanoparticle is a safe material, can be simply produced in large scale, and its dispersion in base fluids often have an excellent stability, alumina-based nanofluids have received high attention in various thermal processes.
Yang et al. [15] experimentally investigated the flow and heat transfer characteristics of Cu-water and Cu-viscoelastic fluid nanofluids in a smooth tube, and the results showed that Cu-viscoelastic fluid nanofluids have a higher heat transfer performance than viscoelastic base fluid but a lower flow resistance than Cu-water nanofluids.
The enhancement of the effusivity in nanofluids has a frequency dependence as shown in Figure 3, where the enhancement decreased at higher frequency, and for f > 30 Hz, the values of C p κ for both the nanofluids approach that of the base fluid ethanol.
Ionic liquid based nanofluids are a very new and novel class of fluids used for heat transfer.
For n-decane based nanofluids, a similar trend was observed with boron nanofluids over 5 wt.% concentration have the highest surface tension followed by aluminum oxide and aluminum respectively.
Due to the more uniform dispersion and smaller diameter of the gold nanoparticles in the base fluid, the gold nanofluid has a comparable thermal performance with carbon nanofluid of higher volume fraction.
It is concluded that Ethylene glycol based magnetite nanofluid have better results than engine oil based magnetite nanofluid.
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