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Vassilios C. Loukopoulos

Researcher at University of Patras

Publications -  58
Citations -  979

Vassilios C. Loukopoulos is an academic researcher from University of Patras. The author has contributed to research in topics: Regularized meshless method & Catalysis. The author has an hindex of 15, co-authored 54 publications receiving 833 citations. Previous affiliations of Vassilios C. Loukopoulos include Hellenic Open University.

Papers
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Heat transfer and natural convection of nanofluids in porous media

TL;DR: In this article, the role of the nanofluid properties in the cooling performance of the medium and in the relevant heat process is thoroughly investigated using the Darcy-Brinkman and energy transport equations.
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Biomagnetic channel flow in spatially varying magnetic field

TL;DR: In this paper, the fundamental problem of the biomagnetic fluid flow in a channel under the influence of an applied magnetic field is studied, which is described by a coupled and non-linear system of PDEs with their appropriate boundary conditions, the stream function-vorticity formulation is adopted.
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MHD natural-convection flow in an inclined square enclosure filled with a micropolar-nanofluid

TL;DR: In this article, a meshless point collocation method utilizing a velocity-correction scheme has been developed to solve the governing equations in their velocity-vorticity formulation for various Rayleigh (Ra) and Hartman (Ha) numbers, different nanoparticles volume fractions (φ) and considering different inclination angles and magnetic field directions.
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Modeling the natural convective flow of micropolar nanofluids

TL;DR: In this article, a micropolar model for nanofluidic suspensions is proposed in order to investigate theoretically the natural convection of nano-fluid fluids, and the validity of the model is depicted by comparing the numerical results obtained with available experimental and theoretical data.
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Biofluid flow in a channel under the action of a uniform localized magnetic field

TL;DR: In this article, the fundamental problem of the biomagnetic fluid flow in a channel under the influence of a steady localized magnetic field is studied and the numerical solution of the problem is described by a coupled, non linear system of PDEs, with appropriate boundary conditions, the stream function-vorticity formulation is adopted.