A Comparative Study of Entropy Generation Analysis Through Cartesian and Cylindrical Annulus Geometries

Author:

Sakly Abir1,Mahjoub Said Nejla23

Affiliation:

1. Department of Mechanical Engineering, National Engineering School of Monastir, University of Monastir, LGM , Monastir 5019, Tunisia

2. Department of Physics, College of Science, King Khalid University , Abha 61413, Saudi Arabia ; , Monastir 5019, Tunisia

3. LGM, Preparatory Institute for Engineering Studies, University of Monastir , Abha 61413, Saudi Arabia ; , Monastir 5019, Tunisia

Abstract

Abstract This research paper presents a comparative study dealing with entropy generation analysis in Cartesian and cylindrical annulus geometries. This numerical investigation involves heat and mass transfer coupled with forced convection and gas radiation in a semitransparent medium during the evaporation of a thin liquid film. The systems of equations are solved with interfacial and boundary conditions using an implicit finite volume method by the tridiagonal matrix algorithm method. The radiative transfer equation (RTE) was solved by the Ray tracing model. The statistical narrow band correlated-K model with the updated model parameters was applied to calculate the gas transmissivity. The main intent of this paper is to compare the entropy generation components in two different configurations. The result shows that the entropy generation related to heat and mass transfer in the channel is higher than that estimated for the cylindrical annulus. Regarding optimal design selection, the entropy generation analysis, detailed in this paper, suggests a preference for the cylindrical annulus geometry. Our results may guide designers to select from the studied configuration.

Publisher

ASME International

Reference77 articles.

1. Natural Convection Flows in a Vertical, Open Tube Resulting From Combined Buoyancy Effects of Thermal and Mass Diffusion;Int. J. Heat Mass Transfer,1986

2. Natural Convection Heat and Mass Transfer in Vertical Annuli With Film Evaporation and Condensation;Int. J. Heat Mass Transfer,2001

3. Numerical Study of Evaporation in a Vertical Annulus Heated at the Inner Wall;Int. J. Therm. Sci.,2011

4. Liquid Film Evaporation Enhancement in a Vertical Annulus With Preheated Air Flow;Desalin. Water Treat.,2014

5. Mixed Convection Heat and Mass Transfer in Vertical Annuli With Asymmetric Heating;Int. J. Heat Mass Transfer,1991

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