Nucleate Pool Boiling Heat Transfer Coefficients of Distilled Water (H2O) and R-134a/Oil Mixtures From Rib-Roughened Surfaces

Author:

Hsieh Shou-Shing1,Weng Chun-Jen1

Affiliation:

1. Department of Mechanical Engineering, National Sun Yat-Sen University, Kaohsiung, Taiwan 80424, Republic of China

Abstract

Measurements of pool-boiling heat transfer coefficients in distilled water and R-134a/oil mixtures with up to 10 percent (by weight) miscible EMKARATE RL refrigeration lubricant oil are extensively studied for a smooth tube and four rib-roughened tubes (rib pitch 39.4 mm, rib height 4 mm, rib width 15 mm, number of rib element 8, rib angle 30 deg–90 deg). Boiling data of pure refrigerants and oil mixtures, as well as the influences of heat flux level on heat transfer coefficient, are presented and discussed. A correlation is developed for predicting the heat transfer coefficient for both pure refrigerants and refrigerant-oil mixtures. Moreover, boiling visualizations were made to broaden our fundamental understanding of the pool boiling heat transfer mechanism for rib roughened surfaces with pure refrigerants and refrigerant-oil mixtures.

Publisher

ASME International

Subject

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

Reference19 articles.

1. Ayub Z. H. , and BerglesA. E., 1987, “Pool Boiling From GEWA Surfaces in Water and R-113,” Warme- und Stoffubertragung, Vol. 21, pp. 209–219.

2. Bell K. I. , and HewittG. F., and MorrisS. D., 1987, “Nucleate Pool Boiling of Refrigerant/Oil Mixture,” Experimental Heat Transfer, Vol. 1, pp. 71–86.

3. Bier K. , EngelhornH-R., and GorenfloD., 1976, “Heat Transfer with Low-Boiling Halogene Refrigerants, Measurements Taken with Single Tubes and Transmission in Tube Nets,” Klima Kaelte Ing., Vol. 11, pp. 399–406.

4. Chongrungreong S. , and SauerH. J., 1980, “Nucleate Boiling Performance of Refrigerants and Refrigerant-Oil Mixture,” ASME JOURNAL OF HEAT TRANSFER, Vol. 102, pp. 701–705.

5. Carey, V. P., 1992, Liquid-Vapor Phase-Change Phenomena, Hemisphere Publishing Corporation, Washington D.C., pp. 233.

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