Heat Transfer Analysis of Falling Film Evaporation on a Horizontal Elliptical Tube

Author:

Jani Saeid1,Amini Meysam2

Affiliation:

1. Department of Mechanical Engineering, Golpayegan College of Engineering, Moallem Boulevard, P. O. Box 87717-65651, Golpayegan, Iran

2. Department of Mechanical Engineering, University of Kashan, P. O. Box 87317-51167, Kashan, Iran

Abstract

Heat and mass transfer analysis of falling liquid film over a heated horizontal elliptical tube used in desalination systems are investigated. The heat transfer analysis is based on the energy integral formulation with constant wall temperature. Thermal conditions at free surface of the liquid falling film are assumed to be subcooled and saturated, and the effects of surface tension have been considered. The effects of boiling and ripple at the film free surface have been ignored. Heat transfer zoning is considered as the three distinct regions, namely, the jet impingement region, the thermal developing region, and the fully developed region. Extensive analytical study is performed on the thermal hydraulic behavior of the three above mentioned regions, and correlations for both of the film and thermal boundary layer thicknesses, as well as the local and average heat transfer coefficients, have been derived. The results show that the effects of surface tension on heat transfer coefficient is nearly negligible. Based on the presented results, it can be emphasized that the overall heat transfer coefficient increases by increasing the ellipticity of the tube, implying that the elliptical tubes possess more advantages over circular tubes in desalination systems. Comparisons of the analytical results with the existing experimental data verify the validation of the present study.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference13 articles.

1. Heat Transfer in Thin Liquid Films Flowing Over Horizontal Tubes;Parken

2. An Analytical and Experimental Study of Falling-Film Evaporation on a Horizontal Tube;Chyu;ASME J. Heat Transfer

3. Evaporation of Laminar, Falling Liquid Film on a Horizontal Cylinder;Sarma;Wärme-und Stoffübertr.

4. Modeling of Heat and Mass Transfer in Falling Film Absorption Generators;Jani;Scientia Iranica

5. Heat Transfer in the Flow of a Cold, Two-Dimensional Draining Sheet Over a Hot, Horizontal Cylinder;Shu;Eur. J. Mech. B/Fluids

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