A SENSITIVITY STUDY OF THE EFFECTS OF EVAPORATION CONDENSATION ACCOMMODATION COEFFICIENTS ON TRANSIENT HEAT PIPE MODELING

被引:21
作者
HALL, ML [1 ]
DOSTER, JM [1 ]
机构
[1] N CAROLINA STATE UNIV,DEPT NUCL ENGN,RALEIGH,NC 27695
关键词
D O I
10.1016/0017-9310(90)90182-T
中图分类号
O414.1 [热力学];
学科分类号
摘要
The dynamic behavior of liquid metal heat pipe models is strongly influenced by the choice of evaporation and condensation modeling techniques. Classic kinetic theory descriptions of the evaporation and condensation processes are often inadequate for real situations; empirical accommodation coefficients are commonly utilized to reflect nonideal mass transfer rates. The complex geometries and flow fields found in proposed heat pipe systems cause considerable deviation from the classical models. The THROHPUT code, which has been described in previous works, was developed to model transient liquid metal heat pipe behavior from frozen startup conditions to steady state full power operation. It is used here to evaluate the sensitivity of transient liquid metal heat pipe models to the choice of evaporation and condensation accommodation coefficients. Comparisons are made with experimental liquid metal heat pipe data. It is found that heat pipe behavior can be predicted with the proper choice of the accommodation coefficients. However, the common assumption of spatially constant accommodation coefficients is found to be a limiting factor in the model. © 1990.
引用
收藏
页码:465 / 481
页数:17
相关论文
共 43 条
[1]  
BOUDREAU JE, 1982, NOV P S ADV REACT SY
[2]  
BUSSE CA, 1984, 5TH P INT HEAT PIP C
[3]  
BUSSE CA, 1967, OCT P THERM CONV SPE, P391
[4]  
CHANG WS, 1985, NUMER HEAT TRANSFER, V8, P169, DOI 10.1080/01495728508961848
[5]  
Chi S., 1976, HEAT PIPE THEORY PRA
[6]  
COLLIER JC, 1981, CONVECTIVE BOILING C, P316
[7]  
COLWELL GT, 1986, MAR TRANS HEAT PIP M
[8]  
COSTELLO FA, 1986, MAR TRANS HEAT PIP M
[9]  
Cotter T., 1965, LA3246MS LOS AL SCI
[10]  
CULLIMORE BA, 1986, MAR TRANS HEAT PIP M