MHD Boundary Layer Analysis of Hybrid Nanofluid over 3-D Sinusoidal Cylinder
Résumé
Abstract This research deals to investigate the boundary layer surroding a three-dimensional sinusoidal cylinder, the boundary layer was assumed to be filled with hybrid nanofluid consists of water + Cu nanoparticle as main fluid and supported with a small concentration of Al2O3 or Ag nanoparticle. The boundary layer is described by a set of nonlinear partial differential equations due to the continuity, momentum, and energy equations whose transformed to a set of dependent coupled nonlinear ordinary differential equations. The obtained system of equations was solved using composite numerical technique mix of shooting and fifth-order Runge Kutta methods. The behavior of boundary layer under the varies of type and concentration of nanoparticles and the influence of magnetic field has been depicted by a set of graphs and tables.
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