NOMOGRAPHS FOR THE OPTIMUM SOLAR POND DRIVEN LIBR/ZNBR2/CH3OH ABSORPTION-REFRIGERATION SYSTEM

被引:5
作者
ANTONOPOULOS, KA
ROGDAKIS, ED
机构
[1] National Technical University of Athens, Mechanical Engineering Department, Thermal Section, Athens, 106 82
关键词
SOLAR POND; ABSORPTION-REFRIGERATION; METHANOL; LITHIUM BROMIDE;
D O I
10.1002/er.4440160508
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The paper presents a procedure for the calculation of an absorption-refrigeration plant that uses an LiBr/ZnBr2/CH3OH solution and is driven throughout the year by heat received from a solar pond. The calculations for the solar pond are based on a finite-difference solution of the transient heat conduction differential equation during the year, and the operation of the refrigeration unit is simulated by the use of functions describing the thermodynamic behaviour of the working medium. On the basis of the procedure devised, correlations and nomographs are developed that describe the seasonally optimum operation of the proposed composite system. The nomographs may be employed for a first estimation in the design of such systems.
引用
收藏
页码:413 / 429
页数:17
相关论文
共 14 条
[1]  
Iedema P.D., pp. 931-944, (1984)
[2]  
Will W., Alkohole als Kaltemittel für Absorptions‐Kaltemaschines, Z. gas Kälte‐Industria, 47, 5, (1940)
[3]  
Kreider J.F., Kreith F., Solar energy handbook, (1981)
[4]  
Tabor H., Review article: Solar ponds, Solar Energy, 27, pp. 181-194, (1981)
[5]  
Iedema P.D., Jonkers T.M., Machielsen C.H.M., pp. 15-23, (1982)
[6]  
Iedema P.D., Machielsen C.H.M., pp. 123-130, (1983)
[7]  
Gallant R.W., Physical properties of hydrocarbons, 61-72, (1974)
[8]  
Reid R.C., Prausnitz J.M., Poling B.E., The properties of gases and liquids, (1989)
[9]  
Rabl A., Nielsen C.E., Solar ponds for space heating, Solar Energy, 17, pp. 1-12, (1975)
[10]  
Patankar S.V., Numerical heat transfer and fluid flow, (1980)