Insight into the boundary layer flow of non-Newtonian Eyring-Powell fluid due to catalytic surface reaction on an upper horizontal surface of a paraboloid of revolution

被引:47
作者
Abegunrin, O. A. [1 ]
Animasaun, I. L. [1 ]
Sandeep, N. [2 ]
机构
[1] Fed Univ Technol Akure, Dept Math Sci, Akure, Nigeria
[2] VIT Univ, Dept Math, Vellore 632014, Tamil Nadu, India
关键词
Boundary layer analysis; Eyring-Powell fluid; Catalytic surface; Blasius flow; Heat transfer; Mass transfer; AUTOCATALYSIS CHEMICAL-REACTION; NONLINEAR THERMAL-RADIATION; ALUMINA-WATER NANOFLUID; VERTICAL POROUS PLATE; FREE-CONVECTION; BROWNIAN-MOTION; VISCOSITY; THERMOPHORESIS; BIOCONVECTION; DRIVEN;
D O I
10.1016/j.aej.2017.05.018
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Bonnet of a car, the upper surface of a pointed bullet and upper surface of the pointed part of an aircraft are typical examples of an upper horizontal surface of a paraboloid of revolution (uhspr). However, the flow of some fluids past these kinds of objects fit the description of Eyring-Powell fluid flow. Theoretical investigation of two-dimensional Eyring-Powell fluid flow over such object which is neither cone/wedge nor horizontal/vertical is investigated. It is assumed that the flow of Eyring-Powell fluid is induced by catalytic surface reaction and stretching fluid layers at the free stream. The numerical solutions of the governing equation are obtained using classical fourth order Runge-Kutta scheme together with shooting techniques. The impacts of the most important parameters on the flow are presented. It is concluded that the maximum velocity of the flow is ascertained when the flow is characterized as Newtonian fluid flow. On the surface of uhspr, rapid increase and suppress in the temperature distribution and concentration with an increase in the magnitude of one of the Eyring-Powell fluid parameters are guaranteed. A significant fall in the local skin friction coefficients is ascertained due to rise in the magnitude of thickness parameter. (C) 2017 Faculty of Engineering, Alexandria University. Production and hosting by Elsevier B.V.
引用
收藏
页码:2051 / 2060
页数:10
相关论文
共 37 条
[31]   Effect of non-Newtonian flow due to thermally-dependent properties over an inclined surface in the presence of chemical reaction, Brownian motion and thermophoresis [J].
Ahmad, Shahzad ;
Ahmad, Anique ;
Ali, Kashif ;
Bashir, Hina ;
Iqbal, Muhammad Farooq .
ALEXANDRIA ENGINEERING JOURNAL, 2021, 60 (05) :4931-4945
[33]   Magnetohydrodynamic free convection boundary layer flow of non-Newtonian tangent hyperbolic fluid from a vertical permeable cone with variable surface temperature [J].
S. Abdul Gaffar ;
V. Ramachandra Prasad ;
S. Keshava Reddy ;
O. Anwar Bég .
Journal of the Brazilian Society of Mechanical Sciences and Engineering, 2017, 39 :101-116
[34]   On thermal boundary layer of a non-Newtonian fluid on a power-law stretched surface of variable temperature with suction or injection [J].
Bourhan Tashtoush ;
Z. Kodah ;
A. Al-Ghasem .
Heat and Mass Transfer, 2001, 37 :459-465
[35]   Numerical analysis of irregular heat source/sink through a wall jet flow of spherical graphene oxide nanoparticle in the presence of thermophoretic particle deposition: The case of non-Newtonian Eyring-Powell fluid model [J].
Khan, Umair ;
Zaib, Aurang ;
Ishak, Anuar ;
Sherif, El-Sayed M. ;
Sarris, Ioannis E. .
NUMERICAL HEAT TRANSFER PART B-FUNDAMENTALS, 2025, 86 (01) :69-86
[36]   Non-Newtonian Casson Fluid Flow in Presence of Magnetic Field Past an Inclined Stretching Surface in a Porous Medium with Chemical Reaction [J].
Samad, M. Abdus ;
Hasan, M. M. .
8TH BSME INTERNATIONAL CONFERENCE ON THERMAL ENGINEERING, 2019, 2121
[37]   Chemical reaction and variable viscosity effects on flow and mass transfer of a non-Newtonian visco-elastic fluid past a stretching surface embedded in a porous medium [J].
Mahmoud, Mostafa A. A. .
MECCANICA, 2010, 45 (06) :835-846