Skip to main content

Research Repository

Advanced Search

Computational analysis of non-Newtonian boundary layer flow of Nanofluid past a vertical plate with partial slip

Beg, OA; Rao, AS; Nagendra, N; Amanulla, CH; Reddy, MSN

Computational analysis of non-Newtonian boundary layer flow of Nanofluid past a vertical plate with partial slip Thumbnail


Authors

AS Rao

N Nagendra

CH Amanulla

MSN Reddy



Abstract

In the present study, the heat, momentum and mass (species) transfer in external boundary layer flow of Casson nanofluid over a vertical plate surface with multiple slip effect is studied theoretically. The effects of Brownian motion and thermophoresis are incorporated in the model in the presence of both heat and nanoparticle mass transfer convective conditions. The governing partial differential equations (PDEs) are transformed into highly nonlinear, coupled, multi-degree non-similar partial differential equations consisting of the momentum, energy and concentration equations via appropriate non-similarity transformations. These transformed conservation equations are solved subject to appropriate boundary conditions with a second order accurate finite difference method of the implicit type. The influences of the emerging parameters i.e. Casson fluid parameter (β), Brownian motion parameter (Nb), thermophoresis parameter (Nt), Buoyancy ratio parameter (N ), Lewis number (Le), Prandtl number (Pr), Velocity slip factor (Sf) and Thermal slip factor (ST) on velocity, temperature and nano-particle concentration distributions is illustrated graphically and interpreted at length. Validation of solutions with a Nakamura tridiagonal method has been included. The study is relevant to enrobing processes for electric-conductive nano-materials, of potential use in aerospace and other industries.

Citation

Beg, O., Rao, A., Nagendra, N., Amanulla, C., & Reddy, M. (2017). Computational analysis of non-Newtonian boundary layer flow of Nanofluid past a vertical plate with partial slip. Modelling, measurement & control. B, Solid & fluid mechanics & thermics, mechanical systems, 86(1), 271-295

Journal Article Type Article
Acceptance Date May 17, 2017
Online Publication Date Jan 1, 2017
Publication Date Jan 1, 2017
Deposit Date May 10, 2017
Publicly Available Date Jul 26, 2017
Journal Modelling, Measurement and Control B
Print ISSN 1259-5969
Volume 86
Issue 1
Pages 271-295
Publisher URL http://www.iieta.org/sites/default/files/Journals/MMC/MMC_B/86.01_19.pdf
Related Public URLs http://www.iieta.org/Journals/MMC/MMC_B

Files

MOD MEAS CONTROL B viscoplastic slip nanofluid dynamics ACCEPTED MAY 2017.pdf (2.5 Mb)
PDF





You might also like



Downloadable Citations