Enhancement of critical heat flux water subcooled flow boiling in tubes using helically coiled wires.
Author(s) : CELATA G. P., CUMO M., MARIANI A.
Type of article: Article
Summary
The paper reports the results of an experimental investigation into the occurrence of the critical heat flux in subcooled flow boiling of water, carried out to ascertain the influence of thermal hydraulic parameters on critical heat flux under conditions typical of thermonuclear fusion divertor thermal hydraulic design. Helically coiled wires were used as turbulence promotors to enhance the critical heat flux with respect to the smooth channel. Results are given.
Details
- Original title: Enhancement of critical heat flux water subcooled flow boiling in tubes using helically coiled wires.
- Record ID : 1994-2202
- Languages: English
- Source: International Journal of Heat and Mass Transfer - vol. 37 - n. 1
- Publication date: 1994/01
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Indexing
- Themes: Mass transfer
- Keywords: Enhancement; Measurement; Mass transfer; Turbulator; Tube; Heat transfer; Critical flux; Boiling; Water
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A phenomenological model for boiling heat trans...
- Author(s) : WEISMAN J., YANG J. Y., USMAN S.
- Date : 1994/01
- Languages : English
- Source: International Journal of Heat and Mass Transfer - vol. 37 - n. 1
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- Author(s) : PIORO I. L., GROENEVELD D. C., DOERFFER S. S., et al.
- Date : 2002/10
- Languages : English
- Source: International Journal of Heat and Mass Transfer - vol. 45 - n. 22
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An experimental study of critical heat flux in ...
- Author(s) : VANDERVORT C. L., BERGLES A. E., JENSEN M. K.
- Date : 1994/03
- Languages : English
- Source: International Journal of Heat and Mass Transfer - vol. 37
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Comparison of CHF measurements in horizontal an...
- Author(s) : PIORO I. L., GROENEVELD D. C., LEUNG L. K. H., et al.
- Date : 2002/10
- Languages : English
- Source: International Journal of Heat and Mass Transfer - vol. 45 - n. 22
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A hydrodynamic critical heat flux model for sat...
- Author(s) : CHEUNG F. B., HADDAD K. H.
- Date : 1997/04
- Languages : English
- Source: International Journal of Heat and Mass Transfer - vol. 40 - n. 6
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