OPTIMIZATION STUDY OF THE COMPRESSION ABSORPTION CYCLE

被引:42
作者
AHLBY, L
HODGETT, D
BERNTSSON, T
机构
[1] Department of Heat and Power Technology, Chalmers University of Technology, Gothenburg
来源
INTERNATIONAL JOURNAL OF REFRIGERATION-REVUE INTERNATIONALE DU FROID | 1991年 / 14卷 / 01期
关键词
ABSORPTION; COMPRESSION; REFRIGERANT MIXTURE; NH3-H2O;
D O I
10.1016/0140-7007(91)90017-B
中图分类号
O414.1 [热力学];
学科分类号
摘要
For each external situation optimum working conditions for the compression/absorption cycle can be found. The improvement in cycle performance which is gained by optimizing the temperature gradient in the absorber is considerable, particularly for situations with small external temperature gradients. Theoretically, the external and internal temperature gradients should be equal to maximize the cycle performance. The introduction of a solution loop, however, changes this and the optimum internal temperature gradient is always larger than the external gradients. The optimum point of operation is found by studying the changes in the compressor and pump and the heat loss obtained in the solution heat exchanger with the working conditions. A comparison of a compression/absorption cycle, using NH3-H2O, and a compression cycle working with pure R12, always results in a higher coefficient of performance for the former. The capacity of the NH3-H2O system is also considerably higher.
引用
收藏
页码:16 / 23
页数:8
相关论文
共 15 条
[1]  
Altenkirch, Kompressionskältemaschine mit Lösungskreislauf, Kältetechnik, 10, pp. 250-259, (1950)
[2]  
Altenkirch, Kompressionskältemaschine mit Lösungskreislauf, Kältetechnik, 11, pp. 279-284, (1950)
[3]  
Altenkirch, Kompressionskältemaschine mit Lösungskreislauf, Kältetechnik, 12, pp. 310-315, (1950)
[4]  
Stokar, Trepp, Compression heat pump with solution circuit, Part 1: design and experimental results, Int J Refrig, 10, pp. 87-96, (1987)
[5]  
Stokar, Compression heat pump with solution circuit, Part 2: sensitivity analysis of construction and control parameters, Int J Refrig, 10, pp. 134-142, (1987)
[6]  
Mucic, Two-media resorption compression heat pump with solution circuit, Journal of Heat Recovery Systems, 5, pp. 27-31, (1985)
[7]  
Malewski, Integrated absorption and compression heat pump cycle using mixed working fluid ammonia and water, Proceedings of 2nd International Workshop on Research Activities on Advanced Heat Pumps, (1988)
[8]  
Ahlby, Hodgett, Compression/absorption systems—Simulation of two cycles for different applications, Proceedings of XVIIth International Congress of Refrigeration, Vienna, 24–29 August 1987, Vol. E, pp. 785-792, (1987)
[9]  
Hodgett, Ahlby, The effect of the properties of the refrigerant and solvent on the compression/absorption cycle, Proceedings of XVIIth International Congress of Refrigeration, Vienna, 24–29 August 1987, Vol. E, pp. 664-671, (1987)
[10]  
Morawetz, Sorption-compression heat pumps, Int J Energy Res, 13, pp. 83-102, (1989)