cuo–water nanofluid magnetohydrodynamic natural convection inside a sinusoidal annulus in presence of melting heat transfer

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ID: 135322
2017
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Abstract
Impact of nanofluid natural convection due to magnetic field in existence of melting heat transfer is simulated using CVFEM in this research. KKL model is taken into account to obtain properties of CuO–H2O nanofluid. Roles of melting parameter (δ), CuO–H2O volume fraction (ϕ), Hartmann number (Ha), and Rayleigh (Ra) number are depicted in outputs. Results depict that temperature gradient improves with rise of Rayleigh number and melting parameter. Nusselt number detracts with rise of Ha. At the end, a comparison as a limiting case of the considered problem with the existing studies is made and found in good agreement.
Reference Key
sheikholeslami2017mathematicalcuowater Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors ;M. Sheikholeslami;R. Ellahi;C. Fetecau
Journal journal of power sources
Year 2017
DOI
10.1155/2017/5830279
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