摘要
利用非能动余热排出系统1∶10原理性实验台架的稳态实验与启动实验数据,对RELAP5/MOD3.2程序进行评估。结果表明:对于本原理性实验系统,RELAP5/MOD3.2程序过低估算了蒸汽流速对蒸汽凝结换热系数的影响,因而,程序中垂直管内的蒸汽凝结换热系数偏小,计算结果与实验结果偏差大。对RELAP5/MOD3.2程序垂直管内蒸汽凝结换热模型进行了修正,修正后的计算结果与实验值基本吻合。评价结果表明:采用RELAP5/MOD3.2程序对该类型的非能动余热排出系统进行计算,需对程序中垂直管内的蒸汽凝结换热模型进行修正。
The start-up experiment data and steady-state experiment data, which were required from the principle experiment platform of the passive residual heat removal system that is one tenth of its actural size, were used to evaluate RELAPS/MOD3.2 code. The results show that the effect of the steam velocity on the steam condensation heat transfer coefficient in RELAPS/MOD3. 2 code for this experiment system is underestimated. So the steam condensation heat transfer coefficient in the vertical pipe is a little small and the calculated and experimental results are totally different. Therefore, the condensation heat transfer model in the vertical pipe was modified and the calculated results were consistent to experimental results. The research result indicates that it is necessary to modify the condensation heat transfer model when it comes to the analysis of the similar passive residual heat removal system.
出处
《原子能科学技术》
EI
CAS
CSCD
北大核心
2008年第8期678-684,共7页
Atomic Energy Science and Technology
关键词
非能动余热排出
RELAP5程序
凝结换热
原理性实验
passive residual heat removal
RELAP5 code
condensation heat transfer
principle experiment