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- W3039916954 abstract "Abstract A mathematical approach was used to predict the heat transfer performance of CuO nanoparticles with three different filling ratios [DW], [DW70:30EG] and [DW50:50EG]. There was a discussion on the thermophysical properties. Thermal diffusivity, Prandtl member and pumping power were predicted to find the optimal filling ratio. The effect of nanoparticle shapes on the thermal conductivity and dynamic viscosity was examined. The base fluid of [DW50:50EG] showed significant improvement while DW was optimal for thermal conductivity. Higher thermal conductivity was achieved by DW-based spherical nanofluids, while [DW50:50EG]-based platelets nanofluid showed the best improvement in dynamic viscosity. By increasing the temperature, thermal diffusivity increased while the Prandtl number decreased. The loading of nanofluids did not require more power consumption, and the relative pumping power was less than 1." @default.
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- W3039916954 date "2020-05-01" @default.
- W3039916954 modified "2023-10-18" @default.
- W3039916954 title "Thermal Transport Feasibility of (Water + Ethylene Glycol)-Based Nanofluids Containing Metallic Oxides: Mathematical Approach" @default.
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- W3039916954 doi "https://doi.org/10.1088/1757-899x/854/1/012023" @default.
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