Effective thermal conductivity of heat pipes

被引:80
作者
ElNasr, AA
ElHaggar, SM
机构
[1] AMER UNIV CAIRO,DEPT ENGN,CAIRO,EGYPT
[2] AIN SHAMS UNIV,FAC ENGN,DEPT POWER MECH ENGN,CAIRO,EGYPT
来源
HEAT AND MASS TRANSFER | 1996年 / 32卷 / 1-2期
关键词
D O I
10.1007/s002310050097
中图分类号
O414.1 [热力学];
学科分类号
摘要
Several heat pipes were designed and manufactured to study the effect of the working fluids, container materials, and the wick structures on the heat transfer mechanism of the heat pipes. Also, the effect of the number of wick layers on the effective thermal conductivity and the heat transfer characteristics of the heat pipes have been investigated. It was found that the flow behavior of the working fluid depends on the wicking structures and the number of wick layers. The heat transfer characteristics and the effective thermal conductivity are related directly to the flow behavior. Increasing the number of wick layers (up to 16 layers) increases the heat flux with smaller temperature differences. The flattening phenomena of the thermal resistance was observed after 16 wicks layers due to the entrainment limit.
引用
收藏
页码:97 / 101
页数:5
相关论文
共 18 条
[1]  
ABHAT A, 1974, T ASME C, V96, P331
[2]  
ACTON A, 1981, P 4 INT HEAT PIP C
[3]  
AMBROSE JH, 1987, ASME, V109, P1023
[4]   THERMAL PERFORMANCE OF A FLAT-PLATE HEAT-PIPE COLLECTOR ARRAY [J].
BONG, TY ;
NG, KC ;
BAO, H .
SOLAR ENERGY, 1993, 50 (06) :491-498
[5]   THEORY OF ULTIMATE HEAT-TRANSFER LIMIT OF CYLINDRICAL HEAT PIPES [J].
BUSSE, CA .
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 1973, 16 (01) :169-186
[6]  
BUSSE CA, 1969, INT C THERM EL POW G, P495
[7]  
Chisholm D., 1971, The Heat Pipe
[8]  
CHUN KR, 1972, T ASME, V94, P46
[9]  
COTTER TP, 1969, LA4221MS LOS AL SCI
[10]  
Dunn P.D., 1982, HEAT PIPES, V3rd