Author:
Javanmard Mohsen,Taheri Mohammad Hasan,Askari Nematollah,Öztop Hakan F.,Abu-Hamdeh Nidal
Abstract
Purpose
The purpose of this paper is to investigate the hydromagnetic third-grade non-Newtonian fluid flow and heat transfer between two coaxial pipes with a variable radius ratio.
Design/methodology/approach
To solve the approximate nonlinear and linear problems with variable coefficients, a trial function was applied. Methods include collocation, least square and Galerkin that can be applied for obtaining these coefficients.
Findings
It is revealed that an increase of the non-Newtonian parameter, Hartmann number, and radius ratio leads to an augmentation of the absolute value of the dimensionless velocity, temperature, velocity gradient, and temperature gradient of about 10-60%. Further, the augmentation of Bi1 reduces the absolute value of the dimensionless temperature profile and dimensionless temperature gradient about three to four times; hence, the dimensionless heat transfer rate reduces. However, the growth of Bi2 has a contrary impact. Besides, the increase of Pr and Ec leads to an increase in the dimensionless temperature profile and dimensionless temperature gradient; therefore, the dimensionless heat transfer rate increases.
Originality/value
The convection heat transfer on the walls of the pipes is considered, and the nonlinear coupled momentum and energy equations are solved using the least squared method and collocation methods, respectively.
Subject
Applied Mathematics,Computer Science Applications,Mechanical Engineering,Mechanics of Materials
Reference41 articles.
1. Three-dimensional combined radiation-magnetoconvection of low electrically conductive dielectric oxide melt;International Journal of Numerical Methods for Heat and Fluid Flow,2019
2. Effect of magnetic field inclination on magneto-convective induced irreversibilities in a CNT-water nanofluid filled cubic cavity;Frontiers in Heat and Mass Transfer (FHMT),2017
3. MHD flow and heat transfer over a permeable stretching/shrinking sheet in a hybrid nanofluid with a convective boundary condition;International Journal of Numerical Methods for Heat and Fluid Flow,2019
4. Influence of the nanoparticles and uniform magnetic field on the slip blood flows in arterial vessels;Physica Scripta,2019
5. Numerical simulation of two-phase flow regime in horizontal pipeline and its validation;International Journal of Numerical Methods for Heat and Fluid Flow,2018
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