基于系统程序的热腿逆流限流计算

Xiang Li, Wan Sun, Zhuqing Wen, Luteng Zhang, Zaiyong Ma, Liang-ming Pan
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摘要

在发生失冷剂事故时,大量的冷却剂从反应堆中释放出来,在反应堆内部产生蒸汽,然后顺着热管流入蒸汽发生器。当循环中没有建立自然循环时,蒸汽发生器中的冷凝液体通过热腿通过管壁的重力返回到堆芯。这种逆流对反应堆安全性分析有重要影响。目前,在该领域开展了很多研究,但大多集中在研究两相流在垂直或水平管道中的逆流流动特性,对复杂管道中的逆流流动研究较少。本文对失冷事故条件下热腿内两相流的逆流流动进行了建模和计算。实验回路由垂直管、倾斜管和水平管组成。发现热腿形状对注射极限有显著影响,并将基于速度无因次平方根的数据与Wallis垂直管的结果进行了比较。研究了液体粘度、液相和气相密度、管道几何形状对驱油的影响。
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Countercurrent Flow Limitation Calculation of Hot Leg Based On System Program
In the event of a Loss of Coolant Accident, a large amount of coolant is released from the reactor, and steam is generated inside the reactor, and then flows down the heat pipe into the steam generator. When a natural circulation is not established in a loop, the condensed liquid in the steam generator is returned to the core by gravity of the wall of the pipe through the hot leg. This countercurrent flow has important influence on reactor safety analysis. At present, many researches have been carried out in this field, but most of them focus on the study of the countercurrent flow characteristics of two-phase flow in vertical or horizontal pipes, there are few researches on the countercurrent flow in a complex. In this paper, the countercurrent flow of two-phase flow in the hot leg under the condition of Loss of Coolant Accident (LOCA) is modeled and calculated. The experimental loop is composed of vertical pipe, inclined pipe and horizontal pipe. It is found that the shape of the hot leg has a significant effect on the injection limit, and the data based on dimensionless square root of velocity is compared with Wallis’ vertical tube results. The effects of liquid viscosity, density of liquid phase and gas, and geometry of pipeline on flooding were also studied.
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