Flow and heat transfer analysis of Eyring-Powell fluid over stratified sheet with mixed convection

被引:0
作者
Muhammad Bilal
Samia Ashbar
机构
[1] The University of Lahore,Department of Mathematics and Statistics
[2] Gujrat Campus,undefined
关键词
Heat transfer; Thermal stratification; Mixed convection; Eyring-Powell fluid; Heat generation;
D O I
10.1186/s42787-020-00103-6
中图分类号
学科分类号
摘要
This article presents the study of heat transfer under the influence of mixed convective flow of Eyring-Powell fluid over a stratified stretching sheet. The impact of heat generation/absorption is also discussed. The fluid is considered to be a viscous, incompressible, two dimensional, and laminar. Transformation, based on the similarity variables, is used for the alteration of modeled governing partial differential equations (PDEs) into ordinary differential equations (ODEs). The shooting approach is introduced to accomplish the mathematical solution of governing equations. Runge-Kutta method of order four is used for the integration purpose and Newton’s method helps to refine initial guesses. All the programming is done on MATLAB. The effects of emerging parameters on temperature and velocity profiles are discussed through graphs. The related physical properties of flow, i.e., the skin friction coefficient and Nusselt number are described graphically for various parameters. Numerical values for the Nusselt number and skin friction coefficient are tabulated for the various parameters. It is noted that increment in thermal stratification parameter yields fall in both velocity and temperature of fluid and a reverse relation is observed for the heat generation parameter.
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[1]  
Eldesoky I. M.(2019)Concurrent development of thermal energy with magnetic field on a particle-fluid suspension through a porous conduit Bio NanoSci. 9 186-202
[2]  
Abdelsalam S. I.(2019)New insight into AuNP applications in tumour treatment and cosmetics through wavy annuli at the nanoscale Sci. Rep. 9 260-724
[3]  
El-Askary W. A.(2018)The study of non-newtonian nanofluid with hall and ion slip effects on peristaltically induced motion in a non-uniform channel RSC Adv 8 7904-248
[4]  
Ahmed M. M.(2020)Swimming of motile gyrotactic microorganisms and nanoparticles in blood flow through anisotropically tapered arteries Front. Phys. 8 95-411
[5]  
Abdelsalam S. I.(2020)Application of non-fourier double diffusions theories to the boundary-layer flow of a yield stress exhibiting fluid model Physica A 537 122753-286
[6]  
Bhatti M. M.(2020)Anomalous reactivity of thermo-bioconvective nanofluid towards oxytactic microorganisms Appl. Math. Mech. Engl. Ed. 41 711-1019
[7]  
Abdelsalam S. I.(2019)Electromagnetic flow for two-layer immiscible fluids Engr. Sci. Tech. Int. J. 22 237-30
[8]  
Bhatti M. M.(2013)Simultaneous effects of magnetic field and space porosity on compressible Maxwell fluid transport induced by a surface acoustic wave in a microchannel Chin. Phys. B 22 124702-80
[9]  
Bhatti M. M.(2017)Combined effects of magnetic field and rheological properties on the peristaltic flow of a compressible fluid in a microfluidic channel Eurp. J. Mech. B/Fluids 65 398-476
[10]  
Marin M.(2016)Effect of variable thermal conductivity and thermal radiation with CNTS suspended nanofluid over a stretching sheet with convective slip boundary conditions: Numerical study J. Mol. Liq 222 279-69