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Can I read Keller Box Simulation of Magnetic Pseudoplastic Nano-polymer Coating Flow Over a Circular Cylinder with Entropy Optimisation on EtoBox?

Keller Box Simulation of Magnetic Pseudoplastic Nano-polymer Coating Flow Over a Circular Cylinder with Entropy Optimisation by Qasem Al-Mdallal; V. Ramachandra Prasad; H. Thameem Basha; Ioannis Sarris; Nevzat Akkurt is a Engineering article available to read on EtoBox.

What is Keller Box Simulation of Magnetic Pseudoplastic Nano-polymer Coating Flow Over a Circular Cylinder with Entropy Optimisation about?

## Entropy generation Convective heat transfer In this study, a Keller box calculation of magnetic nanopolymer coating flow over a circular cylinder in the presence of nonlinear convection is performed. A two-phase nanofluid model (Buongiorno model) is used to model the equations for nanofluid flow and heat and mass transfer. The problem at hand is first formulated in the dimensional form of nonlinear partial differential equations (PDEs) and then transformed into the dimensionless PDEs form by manipulating non-similar variables. The Keller box approach (implicit finite differences) is used for the calculations of the transformed PDEs. The characteristics of critical thermophysical physical parameters on the flow field, viz thermal convection, Brownian motion, Weissenberg number, thermophoresis, magnetic field, heat source/sink, Biot number, buoyancy ration parameter, Eckert number, and mixed convection, are graphically manifested. In addition, the flow control parameters estimate the sheath friction, heat transfer rate, and mass transfer rate in the flow coordinate. A significant increase in the velocity of the Williamson nanofluid is accompanied by an increase in the Biot number,

Who reads Keller Box Simulation of Magnetic Pseudoplastic Nano-polymer Coating Flow Over a Circular Cylinder with Entropy Optimisation?

It is typically read by researchers, students, and practitioners in Engineering.

Author
Qasem Al-Mdallal; V. Ramachandra Prasad; H. Thameem Basha; Ioannis Sarris; Nevzat Akkurt
Publisher
Elsevier BV
Published
2022
Language
EN
Field
Engineering (Physical Sciences)