Lookup Tables for Predicting CHF and Film-Boiling Heat Transfer: Past, Present, and Future

Author:

Groeneveld D. C.1,Leung L. K. H.2,Guo Y.2,Vasic A.2,El Nakla M.3,Peng S. W.3,Yang J.3,Cheng S. C.3

Affiliation:

1. Atomic Energy of Canada Limited, Chalk River Laboratories Ontario K0J 1J0, Canada and University of Ottawa Department of Mechanical Engineering, Ottawa, Ontario K1N 6N5, Canada

2. Atomic Energy of Canada Limited Chalk River Laboratories, Ontario K0J 1J0, Canada

3. University of Ottawa, Department of Mechanical Engineering Ottawa, Ontario K1N 6N5, Canada

Publisher

Informa UK Limited

Subject

Condensed Matter Physics,Nuclear Energy and Engineering,Nuclear and High Energy Physics

Reference41 articles.

1. Heat Transfer at High Rates to Water with Surface Boiling

2. D. C. GROENEVELD, “An Investigation of Heat Transfer in the Liquid Deficient Regime,” AECL-3281, Atomic Energy of Canada Limited (1969).

3. V. E. DOROSHCHUK, L. L. LEVITAN, and F. P. LANTZMAN, “Investigation into Burnout in Uniformly Heated Tubes,” 75-WA/HT-22, American Society of Mechanical Engineers (1975).

4. Comparison of CHF measurements in R-134a cooled tubes and the water CHF look-up table

5. 1986 AECL-UO Critical Heat Flux Lookup Table

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