Effect of nonlinear thermal radiation on 3D magneto slip flow of Eyring-Powell nanofluid flow over a slendering sheet with binary chemical reaction and Arrhenius activation energy

被引:105
|
作者
Reddy, S. R. R. [1 ]
Reddy, P. Bala Anki [1 ]
Bhattacharyya, Krishnendu [2 ]
机构
[1] Vellore Inst Technol, Dept Math, SAS, Vellore 632014, Tamil Nadu, India
[2] Banaras Hindu Univ, Inst Sci, Dept Math, Varanasi 221005, Uttar Pradesh, India
关键词
MHD; Slendering stretchable sheet; Nonlinear thermal radiation; Heat generation/absorption; Arrhenius activation energy; BOUNDARY-LAYER-FLOW; MASS-TRANSFER; HEAT-TRANSFER; NUMERICAL-SIMULATION; STRETCHING SURFACE; NATURAL-CONVECTION; POROUS ENCLOSURE; VERTICAL SURFACE; FLUID; THERMOPHORESIS;
D O I
10.1016/j.apt.2019.09.029
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
An analysis is performed to study the combined effects of nonlinear thermal radiation, Arrhenius activation energy, chemical reaction and heat generation/absorption on the steady three-dimensional magnetohydrodynamic flow of Eyring-Powell nanofluid flow over a slendering stretchable sheet with velocity, thermal and solutal slips. The prevailing partial differential equations are transmuted into coupled nonlinear ordinary differential equations via with the suitable similarity transformations. The resultant nonlinear coupled differential equations are solved numerically by using the R-K 4th order method along with shooting scheme. The results are calculated to measure the influence of sundry parameters on velocity, temperature, concentration, shear stress, temperature gradient and concentration gradient are presented graphically and in tabular form. It is noticed that the temperature is more impactable for higher values of radiative heat transport. The local Sherwood number decays exponentially for all the values of the chemical reaction parameter. We compared the present results for the limiting cases with previously published results, which has shown reliability and efficiency. (C) 2019 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
引用
收藏
页码:3203 / 3213
页数:11
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