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Lioua Kolsi

Researcher at University of Monastir

Publications -  233
Citations -  4889

Lioua Kolsi is an academic researcher from University of Monastir. The author has contributed to research in topics: Nanofluid & Heat transfer. The author has an hindex of 30, co-authored 144 publications receiving 3082 citations. Previous affiliations of Lioua Kolsi include École Normale Supérieure & University College of Engineering.

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Numerical Investigation of a Rotating Magnetic Field Influence on Free Convective CNT/Water Nanofluid Flow within a Corrugated Enclosure

TL;DR: In this article , the effect of applying a rotating magnetic field on the natural convective flow of CNT/Water nanofluid inside a corrugated square cavity differentially heated through its sidewalls, while the upper and lower boundaries are supposed to be perfectly insulated.
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Numerical Simulation of the Effects of Reduced Gravity, Radiation and Magnetic Field on Heat Transfer Past a Solid Sphere Using Finite Difference Method

TL;DR: In this article , the effect of the buoyancy force caused by the density variation on natural convective heat transfer past a solid sphere was investigated and the results showed that the velocity increases with the reduced gravity parameter and solar radiation but decreases with Prandtl number and magnetic field parameter.

Combined Effects of Sequential Velocity and Variable Magnetic Field on the Phase Change Process in a 3D Cylinder Having a Conic-Shaped PCM-Packed Bed System

TL;DR: In this article, the effects of sequential velocity and variable magnetic field on phase change during hybrid nanofluid convection through a 3D cylinder containing a phase-change material packed bed (PCM-PB) system was analyzed with the finite element method.
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An unsteady bioconvective non-Newtonian nanofluid model with variable thermal properties and modified heat flux framework

TL;DR: In this paper , a nonlinear partial differential system (PDS) is proposed to model the thermal mechanism of non-Newtonian nanofluids due to accelerated frame in view of variable thermal conductivity.
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Numerical simulations for radiated bioconvection flow of nanoparticles with viscous dissipation and exponential heat source

TL;DR: In this paper , a nonlinear radiative bioconvection flow of nanofluid due to impulsively porous space is investigated, where the applications of externa heat source with exponential relations, viscous dissipation and magnetic force are considered for fully developed stretched flow.