Entropy Analysis on a Three-Dimensional Wavy Flow of Eyring–Powell Nanofluid: A Comparative Study

نویسندگان

چکیده

The thermal management of a system needs an accurate and efficient measurement exergy. For optimal performance, entropy should be minimized. This study explores the enhancement exchange in stream Eyring–Powell fluid comprising nanoparticles saturating vertical oriented dual cylindrical domain with uniform conductivity viscous dissipation effects. A symmetrical sine wave over walls is used to induce flow. mathematical treatment for conservation laws are described by set PDEs, which are, later on, converted ordinary differential equations homotopy deformations then evaluated on Mathematica software tool. expression pressure rise term has been handled numerically using numerical integration through algorithm Newton–Cotes formula. impact various factors velocity, heat, profile, Bejan number elaborated pictorially tabularly. generation enhanced variation but reduced case concentration parameter, reveals opposite findings Newtonian fluid. From abovementioned detailed discussion, it can concluded that shows difference behavior presence due significant effects, also, travels faster than comparison between Eyring-Powell also made each pertinent parameter special cases. may applicable cancer therapy biomedicine nanofluid characteristics drugs considered as non-Newtonian

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ژورنال

عنوان ژورنال: Mathematical Problems in Engineering

سال: 2021

ISSN: ['1026-7077', '1563-5147', '1024-123X']

DOI: https://doi.org/10.1155/2021/6672158