Local heat transfer coefficients during condensation of R-22 and R-32/R-125 mixtures

被引:9
作者
Eckels, SJ [1 ]
Unruh, BJ
机构
[1] Kansas State Univ, Manhattan, KS 66506 USA
[2] Frigidaire Home Prod, Dublin, OH USA
来源
HVAC&R RESEARCH | 1999年 / 5卷 / 01期
关键词
D O I
10.1080/10789669.1999.10391223
中图分类号
O414.1 [热力学];
学科分类号
摘要
In this paper local and average heat transfer coefficients during condensation of refrigerants R-22 and two mixtures of R-32/R-125 (45%/55% and 25%/75%) are presented. The local hear transfer coefficients were determined using a specially instrumented test section that measured local energy flow and surface temperatures during condensation. The local test section used an 8.0 mm (0.32 in) inner diameter smooth tube that was 1.93 nz (6.3 ft) long. Average hear transfer coefficients were determined using the Log-Mean-Temperature-Difference equations. The local method yielded useful information on the variation of hear transfer coefficients with refrigerant quality and mass flux. Typically, heat transfer coefficients were found to double from low to high quality at a particular mass flux, while smaller increases occurred with mass flux. Evaluation of local heat transfer coefficients confirmed that the method yields reasonable results. Specifically, comparison of the average of local hear transfer coefficients with measured average hear transfer coefficients showed excellent agreement. The results also indicated that the R-32 (45%)/ R-125 (55%) mixture had slightly better heat transfer performance than R-22, while the R-32 (25%)/R-125 (75%) mixture had significantly lower hear transfer performance than R-22.
引用
收藏
页码:59 / 76
页数:18
相关论文
共 14 条
[1]  
ABIS L, 1969, THESIS KANSAS STATE
[2]  
Akers W.W., 1959, Chemical Engineering Progress Symposium Series, V55, P171
[3]  
Briggs D.E., 1969, Chemical Engineering Progress Symposium Series, V65, P35
[4]   A methodology for determining experimental uncertainties in regressions [J].
Brown, KK ;
Coleman, HW ;
Steele, WG .
JOURNAL OF FLUIDS ENGINEERING-TRANSACTIONS OF THE ASME, 1998, 120 (03) :445-456
[5]  
CAVALLINI A, 1974, 5TH P INT HEAT TRANS, V3, P309
[6]  
Gayer P., 1992, I CHEM ENG S SERIES, V2, P1291
[7]  
GOODYKOONTZ J, 1967, D3953 NASA
[8]  
Kaushik N., 1988, ASHRAE T, V94, P261
[9]  
Kline S.J., 1952, ASME Mechanical Engineering, V75, P3, DOI DOI 10.1016/J.CHAOS.2005.11.046
[10]  
MOCHIZUKI S, 1988, T JSME B, V54, P1796