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  4. Falling-Film Evaporation On Tube Bundle With Plain And Enhanced Tubes-Part I: Experimental Results
 
research article

Falling-Film Evaporation On Tube Bundle With Plain And Enhanced Tubes-Part I: Experimental Results

Habert, M.
•
Thome, J. R.  
2010
Experimental Heat Transfer

The complexities of two-phase flow and falling-film evaporation on a tube bundle present important challenges in the design of heat exchangers and the understanding of the physical phenomena taking place. The development of structured surfaces to enhance nucleate boiling heat transfer and, thus, reduce the size of evaporators adds another level of complexity, requiring the characterization of the effect of enhanced surfaces on the boiling phenomena occurring in a falling-film evaporator. In this article, falling-film evaporation measurements on a single tube row bundle and a three-row tube bundle were performed to obtain local heat transfer coefficients. Four types of tubes were tested: a plain tube, an enhanced condensing tube (Gewa-C+LW, Wieland Werke, Ulm, Germany)and two enhanced boiling tubes (Turbo-EDE2, Wolverine, Hunstville, Alabama, USA; Gewa-B4, Wieland Werke, Ulm, Germany). Two refrigerants, R134a and R236fa, were tested at a saturation temperature of 5 degrees C, liquid film Reynolds numbers ranging from 0 to 3,000, and heat fluxes between 20 and 60 kW/m(2) in pool boiling and falling-film configurations. Finally, the understanding of the physical phenomena governing the falling-film evaporation of liquid refrigerants has been investigated with visualization of the process.

  • Details
  • Metrics
Type
research article
DOI
10.1080/08916152.2010.502045
Web of Science ID

WOS:000282129100001

Author(s)
Habert, M.
Thome, J. R.  
Date Issued

2010

Published in
Experimental Heat Transfer
Volume

23

Start page

259

End page

280

Subjects

falling-film evaporation

•

pool boiling

•

enhanced boiling

•

heat transfer

•

two-phase flow

•

Wilson plot

•

Structured Surfaces

•

Horizontal Tubes

•

Transitions

•

Flow

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LTCM  
Available on Infoscience
December 16, 2011
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/74845
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