Experimental Investigation on Natural Circulation Characteristics of Core Make-Up Tank Under Rolling Conditions

Shuguang Wang, Jinlei Zhang, Ya'ou Shen, Xiaobo Liu, Shuhua Ding, Yusheng Liu, Dongyang Li, Jilin Tang
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Abstract

In the floating nuclear power plant, Core Make-up Tank (CMT) is one of the passive safety facilities, has been widely used in nuclear engineering. Under emergency conditions, natural circulation occurs and consequent thermal stratification appears in CMT system. However, rolling motion will directly affect the natural circulation and destroy the formation of thermal stratification, so there will be uncertain and unknown change of the safety injection capacity of CMT. Based on above analysis, this work carried out experiments under rolling conditions to reveal natural circulation and thermal stratification characteristics in CMT. A temperature detecting matrix formed by thermocouples is deployed in CMT. It is concluded that thermal stratification distribution is affected by the rolling conditions. Rolling conditions increase the thickness of thermal stratification and reduce the temperature gradient. The CMT natural circulation has two stages, the influence of rolling motion on the average flow in the first stage of natural circulation is very weak, but rolling motion will significantly affect the second stage of natural circulation and advance the decline time of direct vessel injection (DVI) flow rate. The transition time of natural circulation stage and the flow change in the second stage of natural circulation are related to the thermal stratification in CMT. The impact of rolling conditions should not be ignored when evaluating the performance of CMT.
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滚动工况下堆芯补液罐自然循环特性试验研究
在浮式核电站中,堆芯补液池(CMT)是一种被动安全设施,在核工程中得到了广泛的应用。在紧急情况下,CMT系统会发生自然循环,从而产生热分层。然而,滚动运动将直接影响自然环流,破坏热分层的形成,因此CMT的安全注入能力将存在不确定和未知的变化。基于以上分析,本工作开展了滚动条件下的实验,揭示了CMT的自然环流和热分层特征。在CMT中部署了由热电偶组成的温度检测矩阵。得出热分层分布受轧制条件影响的结论。轧制条件增加了热分层厚度,减小了温度梯度。CMT自然循环分为两个阶段,滚动运动对第一阶段自然循环平均流量的影响非常弱,但滚动运动对第二阶段自然循环的影响显著,并提前了直接血管注入(DVI)流量的下降时间。自然环流阶段的过渡时间和自然环流第二阶段的流量变化与CMT热分层有关。在评价CMT的性能时,轧制条件的影响不容忽视。
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