Entropy Generation-Based Analysis of Laminar Magneto-Convection in Different Cross-Section Channel Filled with Ferrofluid and Subjected to Partial and Full Magnetic Fields

Author:

Zitouni Kamel1,Aidaoui Lakhdar1,Lasbet Yahia1,Tayebi Tahar2

Affiliation:

1. Laboratoire de Développent en Mécanique et Matériaux, LDMM, University of Djelfa, Djelfa, 17000, Algeria

2. Department of Mechanical Engineering, Faculty of Sciences and Technology, University of Mohamed El Bachir El Ibrahimi, Bordj Bou Arreridj, El-Anasser, 34030, Algeria

Abstract

Heat transfer and entropy generation of laminar flow of a ferrofluid in different cross-section channel subjected to partial and full magnetic field are investigated in this study. A constant heat flux condition was applied on the external surface. The conservation equations (mass, momentum, and energy) are solved numerically via the finite volume method with a second-order precision. The effects of fully or partially applying a magnetic field with different directions and intensities on thermodynamic features, heat transfer, and entropy generation have been investigated. Analyses were carried out in four different cross-section channels, namely triangular, rectangular, circular, and elliptical. Results indicate that the circular cross-section channel provides higher heat transfer rates and lower entropy generation than non-circular cross-section channels.

Publisher

American Scientific Publishers

Subject

Fluid Flow and Transfer Processes,Mechanical Engineering

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