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Benchmark solution for a vertical buoyancy-assisted laminar backward-facing step flow using finite element, finite volume and finite difference methods
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The article was published on 1993-01-01 and is currently open access. It has received 21 citations till now. The article focuses on the topics: Finite difference coefficient & Mixed finite element method.read more
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A review of research on laminar mixed convection flow over backward- and forward-facing steps
TL;DR: In this paper, a comprehensive review of the flow and heat transfer results of single-phase laminar mixed convection flow over vertical, horizontal and inclined backward-and forward-facing steps is presented.
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Effect of a rotating cylinder in forced convection of ferrofluid over a backward facing step
TL;DR: In this article, the effects of magnetic dipole strength and cylinder rotation angle on heat transfer enhancement and fluid flow characteristics of a rotating cylinder under the influence of the magnetic dipoles in backward facing step geometry were analyzed.
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Identification of forced convection in pulsating flow at a backward facing step with a stationary cylinder subjected to nanofluid
TL;DR: In this paper, the thermal performance of forced pulsating flow at a backward facing step with a stationary cylinder subjected to nanofluid is presented, where the governing equations are solved with a finite volume based code.
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Influence of inclination angle of magnetic field on mixed convection of nanofluid flow over a backward facing step and entropy generation
TL;DR: In this paper, the influence of the Reynolds number (between 20 and 200), Hartmann number and solid volume fraction of the nanoparticle (between 0 and 0.04) on the fluid flow and heat transfer are numerically investigated for different orientation angles of the magnetic field.
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Numerical investigation and reduced order model of mixed convection at a backward facing step with a rotating cylinder subjected to nanofluid
TL;DR: In this article, numerical investigation of mixed convection at a backward facing step with a rotating cylinder subjected to nanofluid is conducted and a reduced order model of the system is obtained by using the proper orthogonal decomposition method.