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Oluwole Daniel Makinde

Researcher at Stellenbosch University

Publications -  616
Citations -  17516

Oluwole Daniel Makinde is an academic researcher from Stellenbosch University. The author has contributed to research in topics: Heat transfer & Nanofluid. The author has an hindex of 56, co-authored 576 publications receiving 13757 citations. Previous affiliations of Oluwole Daniel Makinde include Nelson Mandela Metropolitan University & Cape Peninsula University of Technology.

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Entropy Analysis of MHD Variable Thermal Conductivity Fluid Flow Past a Convectively Heated Stretching Cylinder

TL;DR: In this paper, the entropy analysis during magnetohydrodynamic (MHD) boundary layer flow of a viscous incompressible electrically conducting fluid past a stretching cylinder with convective heating in the presence of a transverse magnetic field was studied.

Heat transfer and entropy generation in a pipe flow with temperature dependent viscosity and convective cooling

TL;DR: In this paper, the second law analysis is performed to study the entropy generation rate in a variable viscosity liquid flowing steadily through a cylindrical pipe with convective cooling at the pipe surface.
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Solving microwave heating model in a slab using Hermite–Padé approximation technique

TL;DR: In this paper, the Hermite-Pade approximation method was employed to explicitly construct the approximate solution of steady state reaction-diffusion equations with source term that arise in modeling microwave heating in an infinite slab with isothermal walls.
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Effects Wall Properties on Peristaltic Transport of Rabinowitsch Fluid through an Inclined Non-Uniform Slippery Tube

TL;DR: In this article, the effects of slip and wall properties on the peristaltic mechanism of Rabinowitsch fluid flowing through a non-uniform inclined tube is investigated under the assumptions of long wavelength and small Reynold's number.
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Optimal Control Model and Cost Effectiveness Analysis of Maize Streak Virus Pathogen Interaction with Pest Invasion in Maize Plant

TL;DR: An optimal control deterministic model for the dynamics of Maize Streak Virus pathogen interaction with a pest invasion on Maize plant to examine the best strategy for maize streak disease elimination is proposed and analyzed.