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Effect of resistive heating on incessantly poignant thin needle in magnetohydrodynamic Sakiadis hybrid nanofluid

Iskander TliliFaculty of Civil Engineering, Duy Tan University, Da Nang 550000, VietnamHossam A. NabweyDepartment of Basic Engineering Science, Faculty of Engineering, Menoufia University, Shebin El-Kom 32511, EgyptM. Girinath ReddyDepartment of Mathematics, M. S. Ramaiah Institute of Technology, Bangalore 560 054, IndiaN. SandeepDepartment of Mathematics, Central University of Karnataka, Kalaburagi 585367, IndiaMaddileti PasupulaDepartment of Mathematics, Mahatma Gandhi University, Nalgonda 508254, India
2020en
ABI

Аннотация

The flow and energy transport of water-ethylene glycol (EG) based Ti-Cu hybrid nanofluid due to incessantly poignant needle in magnetohydrodynamic Sakiadis flow with resistive heating is investigated. We scrutinized the flow and heat transfer of the Blasius and free stream flows. The governing Partial Differential Equations are transformed as Ordinary Differential Equations using suitable similarities and resolved numerically using RK (Runge-Kutta) based shooting procedure. Numerical and graphical outcomes are explored and examined for the drive, thermal transport, surface friction and local Nusselt number of various pertinent parameters. It is originate that the flow and thermal boundary layer of Blasius and Sakiadis flows are not equal. The rate of energy transport is high in moving needle in the static fluid when equated with the fixed needle in dynamic fluid. It is also established that the rate of heat transfer in Ti-Cu/EG-water hybrid nanofluid is more than water-EG/Ti nanofluid.

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