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Abstract
NUMERICAL STUDY OF CONVECTIVE MHD FLOW OF A TERNARY NANOFLUID OVER A STRETCHING SHEET WITH VISCOUS AND JOULE HEATING EFFECTS
Janapati Siva Shankar Rao*
ABSTRACT
This paper investigates the steady, two-dimensional convectivemagneto hydrodynamic (MHD) boundary layer flow of a ternary( ) and hybrid nanofluids ( )over a convectively heated elastic sheet. The governing equations withconvective boundary conditions are solved numerically using amathematical software tool, employing the RKF-45 method along withthe shooting technique. The plots of velocity and temperature profilesfor both and for variousparameters are captured. The Grashof number (G ) enhances velocityand depreciates temperature in both nanofluids. It is noticed that higherdissipative energy ( c E ) larger the velocity and temperature in the entire flow region. Skinfriction ( ) increases and Nusselt number (Nu) decreases at the stretching sheet in bothternary as well as hybrid nanofluid with the increasing values of / Rd / Ec /Qs . This paperendorses that ternary nanofluid has an excellent thermal accomplishment over the hybridnanofluid.
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