To read this content please select one of the options below:

Mixed convective stagnation point flow of a hybrid nanofluid toward a vertical cylinder

Najiyah Safwa Khashi'ie (Fakulti Teknologi Kejuruteraan Mekanikal dan Pembuatan, Universiti Teknikal Malaysia Melaka, Melaka, Malaysia)
Norihan M. Arifin (Institute for Mathematical Research and Department of Mathematics, Universiti Putra Malaysia, Serdang, Malaysia)
John H. Merkin (Department of Applied Mathematics, University of Leeds, Leeds, UK)
Rusya Iryanti Yahaya (Institute for Mathematical Research, Universiti Putra Malaysia, Serdang, Malaysia)
Ioan Pop (Department of Mathematics, Babes-Bolyai University, Cluj-Napoca, Romania)

International Journal of Numerical Methods for Heat & Fluid Flow

ISSN: 0961-5539

Article publication date: 19 March 2021

Issue publication date: 24 November 2021

216

Abstract

Purpose

The purpose of this paper is to numerically analyze the stagnation point flow of Cu-Al2O3/water hybrid nanofluid with mixed convection past a flat plate and circular cylinder.

Design/methodology/approach

The similarity equations that reduced from the boundary layer and energy equations are solved using the bvp4c solver. The duality of solutions is observed within the specific range of the control parameters, namely, mixed convection parameter λ, curvature parameter γ and nanoparticles volumetric concentration ϕ1 for alumina, while for copper ϕ2. The stability analysis is also designed to justify the particular solutions’ stability. Additionally, the idea to obtain the solution for large value of λ and γ is also presented in this paper.

Findings

Two solutions exist in opposing and assisting flows up to a critical value λc where λc lies in the opposing region. An upsurge of the curvature parameter tends to extend the critical value (delay the separation process), whilst increase the heat transfer performance of the working fluid. Meanwhile, the application of hybrid Cu-Al2O3/water nanofluid also can decelerate the separation of laminar boundary layer flow and produce higher heat transfer rate than the Cu–water nanofluid and pure water.

Originality/value

The results are new and original. This study benefits to the other researchers, specifically in the observation of the fluid flow characteristics and heat transfer rate of the hybrid nanofluid. Also, this paper features with the mathematical formulation for the solution with large values of λ and γ.

Keywords

Acknowledgements

The authors appreciatively acknowledge the financial support from the Ministry of Higher Education (Malaysia) through the KPT/FRGS/1/2019/STG06/UPM/02/3–Vot 5540309 and the research support from Universiti Putra Malaysia and Universiti Teknikal Malaysia Melaka.

Conflict of interest: The authors declare that there is no conflict of interest.

Citation

Khashi'ie, N.S., Arifin, N.M., Merkin, J.H., Yahaya, R.I. and Pop, I. (2021), "Mixed convective stagnation point flow of a hybrid nanofluid toward a vertical cylinder", International Journal of Numerical Methods for Heat & Fluid Flow, Vol. 31 No. 12, pp. 3689-3710. https://doi.org/10.1108/HFF-11-2020-0725

Publisher

:

Emerald Publishing Limited

Copyright © 2021, Emerald Publishing Limited

Related articles