Investigating the diameter of solid particles effects on a laminar nanofluid flow in a curved tube using a two phase approach |
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Authors: | A. Akbarinia R. Laur |
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Affiliation: | aNew Energies Dept., Energy Research Institute, International Center for Science, High Technology & Environmental Sciences, Mahan, Iran;bInstitute for Electromagnetic Theory and Microelectronics (ITEM), University of Bremen, Bremen, Germany |
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Abstract: | In this paper, we report the results of our numerical studies on laminar mixed convection heat transfer in a circular Curved tube with a nanofluid consisting of water and 1 vol.% Al2O3. Three dimensional elliptic governing equations have been used. Two phase mixture model and control volume technique have been implemented to study flow field. Effects of the diameter of particles on the hydrodynamic and thermal parameters are investigated and discussed. Increasing the solid particles diameter decreases the Nusselt number and secondary flow, while the axial velocity augments. When the particles are in order of nano meter, increasing the diameter of particles, do not change the flow behaviors. The distribution of solid nanoparticles is uniform and constant in curved tube. |
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Keywords: | Nanofluid Two phase Curved tube Laminar |
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