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- W2187629477 abstract "In this study the flow field of VVER-440 fuel rod bundle is numerically investigated, focusing on its heat transfer characteristics. The fuel rod bundle contains 60 fuel rods with length of 960 mm and 4 spacer grids. In VVER-440 fuel rod bundle the coolant fluid (water) is in high pressure and temperature condition. In order to improve its thermal properties, water-AL2O3 nanofluid is used. In this literature, the effects of diameter and volume fraction of nanoparticles on thermo-hydraulic parameters are studied. To perform correct calculation, different turbulence models and grid qualities of fuel rod bundle are studied and results are compared with reference results. The Brownian motions of nanoparticles have been considered to determine the thermal conductivity and dynamic viscosity of Al2O3-Water nanofluid, which depend on the temperature. The results show that (i) a significant enhancement of heat transfer coefficient in studied fuel rod bundle due to suspension of Al2O3 nanoparticles in the base fluid in comparison with pure water is obtained, (ii) enhancement of heat transfer is intensified with increasing the volume fraction of nanoparticles, (iii) increasing the volume fraction of nanoparticles leads to higher pressure drop, (iv) with decreasing particle diameters the heat transfer coefficient increases for Al2O3water nanofluid." @default.
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- W2187629477 date "2014-01-01" @default.
- W2187629477 modified "2023-09-27" @default.
- W2187629477 title "NUMERICAL SIMULATION OF FLOW AND HEAT TRANSFER OF TURBULENT NANOFLUID FLOW IN A TRIANGULAR ROD BUNDLE" @default.
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