Effects of Brownian and thermophoresis on the nanofluid flow with zero nanoparticle mass flux and convective conditions through non-linearly expanding Riga plate

被引:0
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作者
Sharma, Ram Prakash [1 ]
Mishra, S. R. [2 ]
Panda, G. K.
Pattnaik, P. K.
机构
[1] Natl Inst Technol Arunachal Pradesh, Dept Mech Engn, Jote 791113, Arunachal Prade, India
[2] Siksha O Anusandhan Deemed Univ, Dept Math, Bhubaneswar 751030, Orissa, India
来源
关键词
Buongiorno model nanofluid; zero mass flux; convective conditions; thermal radiation; numerical method; STAGNATION-POINT FLOW; VISCOUS DISSIPATION; CHEMICAL-REACTION; VISCOSITY; TRANSPORT; SUBJECT; ENTROPY; THERMO;
D O I
10.1142/S021798492450026
中图分类号
O59 [应用物理学];
学科分类号
摘要
The present flow phenomena characterize the behavior of the Brownian motion and thermophoresis considering the Buongiorno model nanofluid through a non-linearly expanding Riga plate. The conjunction of thermal radiation with zero nanoparticle mass flux and convective boundary conditions enriches the thermal properties of the nanofluid. With the recent need in various industrial applications, the biomedical sector, for the design and development of the production process of various equipment, the role of nanofluid is vital. Further, the suitable variables leading to transformation rules are useful to get rid of the dimensional form of the governing equations. Traditional numerical technique with the help of shooting-based Runge-Kutta fourth-order technique is adopted for the solution of a transformed set of equations. The physical behavior of the characterizing components is presented and described briefly. Further, the important outcomes are the use of Hartmann number that overshoots the velocity profile, whereas the heat transfer retards significantly and enhanced thermophoresis attenuates the heat transfer rate.
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页数:22
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