The Influence of Slip Boundary Condition on Casson Nanofluid Flow over a Stretching Sheet in the Presence of Viscous Dissipation and Chemical Reaction

被引:53
作者
Afify, Ahmed A. [1 ,2 ]
机构
[1] Qassim Univ, Dept Math, Deanship Educ Serv, POB 6595, Buraydah 51452, Saudi Arabia
[2] Helwan Univ, Dept Math, Fac Sci, POB 11795, Cairo, Egypt
关键词
TEMPERATURE-DEPENDENT VISCOSITY; NON-NEWTONIAN NANOFLUIDS; LAYER-FLOW; HEAT-TRANSFER; THERMAL-CONDUCTIVITY; VERTICAL PLATE; FLUID; SURFACE; MHD; CONVECTION;
D O I
10.1155/2017/3804751
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The impacts of multiple slips with viscous dissipation on the boundary layer flow and heat transfer of a non-Newtonian nanofluid over a stretching surface have been investigated numerically. The Casson fluid model is applied to characterize the non-Newtonian fluid behavior. Physical mechanisms responsible for Brownian motion and thermophoresis with chemical reaction are accounted for in the model. The governing nonlinear boundary layer equations through appropriate transformations are reduced into a set of nonlinear ordinary differential equations, which are solved numerically using a shooting method with fourth-order Runge-Kutta integration scheme. Comparisons of the numerical method with the existing results in the literature are made and an excellent agreement is obtained. The heat transfer rate is enhanced with generative chemical reaction and concentration slip parameter, whereas the reverse trend is observed with destructive chemical reaction and thermal slip parameter. It is also noticed that the mass transfer rate is boosted with destructive chemical reaction and thermal slip parameter. Further, the opposite influence is found with generative chemical reaction and concentration slip parameter.
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页数:12
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