Article ID Journal Published Year Pages File Type
788721 International Journal of Refrigeration 2013 9 Pages PDF
Abstract

•Viscosity and conductivity of ZnO nanofluids increased with increase of ZnO concentration.•Viscosity and conductivity of rectangular shape ZnO nanofluid were higher than sphere's.•The Chen et al. model and the Prasher model showed minimum prediction error.

The viscosity and thermal conductivity of ZnO nanofluids with nanoparticle shapes of nearly rectangular and of sphere, were experimentally investigated under various volume concentrations of the nanoparticles, ranging from 0.05 to 5.0 vol.%. The viscosity of the nanofluids increased with increases in the volume concentration by up to 69%. In addition, the enhancement of the viscosity of the nearly rectangular shape nanoparticles was found to be greater by 7.7%, than that of the spherical nanoparticles. The thermal conductivity of the ZnO nanofluids increased by up to 12% and 18% at 5.0 vol.% for the spherical and the nearly rectangular shape nanoparticles, respectively, compared to that of the base fluid (water). The shape of the particles is found to have a significant effect on the viscosity and thermal conductivity enhancements.

Related Topics
Physical Sciences and Engineering Engineering Mechanical Engineering
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