O
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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A Mathematical Model for Coinfection of Listeriosis and Anthrax Diseases
TL;DR: A compartmental Listeria-Anthrax coinfection model describing the transmission dynamics of Listeriosis and Anthrax epidemic in human population using the stability theory of differential equations revealed that the disease-free equilibrium of the Anthrax model only is locally stable when the basic reproduction number is less than one.
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Numerical study of unsteady MHD Couette flow and heat transfer of nanofluids in a rotating system with convective cooling
TL;DR: In this article, the authors investigate numerically the unsteady MHD Couette flow and heat transfer of viscous, incompressible and electrically conducting nanofluids between two parallel plates in a rotating channel.
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Significance of Buoyancy, Velocity Index and Thickness of an Upper Horizontal Surface of a Paraboloid of Revolution: The Case of Non-Newtonian Carreau Fluid
Oluwole Daniel Makinde,M.T. Omojola,Basavarajappa Mahanthesh,F. I. Alao,K. S. Adegbie,Isaac Lare Animasaun,Abderrahim Wakif,R. Sivaraj,Tshehla +8 more
TL;DR: In this article, the boundary layer flow of the fluid over an upper horizontal surface of a paraboloid of revolution is presented and the dimensional governing equations were non-dimensionalized, parameterized, solved numerically and discussed.
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Effect of variable viscosity on thermal boundary layer over a permeable flat plate with radiation and a convective surface boundary condition
TL;DR: In this article, the combined effects of radiation, temperature dependent viscosity, suction and injection on thermal boundary layer over a permeable flat plate with a convective heat exchange at the surface are investigated.
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An eco-epidemiological mathematical model with treatment and disease infection in both prey and predator population
TL;DR: An eco-epidemiological mathematical model with treatment and disease infection in both prey and predator population is examined, and the model with and without infected predator together with treatment classes are compared.