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EVALUATION OF SODIUM POOL FIRE AND THERMAL CONSEQUENCE IN TWO-CELL CONFIGURATION

机译:两室构型中钠池火灾和热后果的评估

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Evaluation of accidental sodium leak, combustion, and its thermal consequence is one of the important issues to be assessed in the field of sodium-cooled fast reactor (SFR) since the liquid sodium is chemically active and might give thermal load to plant building structure due to its exothermic reaction with oxygen in air atmosphere. Therefore, many experimental investigations and numerical simulation tools development have been and still now are being carried out to understand the details of sodium fire behaviors and to contribute to the investigation and preparation of appropriate mitigation measures in the plant design. From various kinds of sodium fire situations, the present paper treats the sodium pool fire and subsequent heat transfer behavior in air atmosphere two-cell geometry both experimentally and analytically because such two-cell configuration is considered as the typical one to possess important characteristic of multi-compartment system seen in an actual plant. Main description of this paper consists of a sodium pool fire experiment that was performed in a rectangular-shaped two-cell system with an opening between the cells, and the discussion of the experimental results. Inner volume of the experimental cells is about 70 m~3. The amount of used sodium and the prepared pool surface area in the experiment are about 55 kg and 2.25 m~2, respectively. The experiment has provided the temperature data measured in more than 100 positions for atmospheric gas and structures other than the data of oxygen concentration and suspended sodium aerosols concentration in the cells. The analyses of the measured data clarify the basic characteristics of sodium pool combustion and consequential heat and mass transfer in the cells, for instance, suggesting several features of multidimensional thermal-hydraulic behaviors such as thermal stratification near the opening between the two cells. In the discussion, numerical analysis using a lumped-parameter based zonal model safety analysis code 'SPHINCS' and the comparison of its results with the experimental data are also carried out to investigate the validity and applicability of the code to this type of sodium fire situation.
机译:钠的意外泄漏,燃烧及其热结果的评估是钠冷快堆(SFR)领域中要评估的重要问题之一,因为液态钠具有化学活性,并且可能会给工厂建筑物结构带来热负荷。在空气中会与氧气发生放热反应。因此,已经并且现在仍在进行许多实验研究和数值模拟工具,以了解钠火行为的细节,并有助于调查和准备工厂设计中的适当缓解措施。从各种钠火的情况出发,本文通过实验和分析的方式处理了空气气氛中的两池几何结构中的钠池着火及随后的传热行为,因为这种两室构型被认为是典型的具有多室重要特征的构型。实际工厂中看到的隔间系统。本文的主要描述包括在矩形的两室系统中进行的钠池火焰实验,该系统在两室之间有一个开口,并对实验结果进行了讨论。实验细胞的内部体积约为70 m〜3。实验中钠的使用量和准备的池表面积分别为约55 kg和2.25 m〜2。该实验提供了在100多个位置测量的大气气体和结构的温度数据,而不是电池中氧气浓度和悬浮钠气溶胶浓度的数据。对测量数据的分析阐明了钠池燃烧的基本特征以及电池中随之发生的传热和传质,例如,提出了多维热工行为的几个特征,例如两个电池之间开口附近的热分层。在讨论中,还使用基于集总参数的区域模型安全分析代码“ SPHINCS”进行了数值分析,并将其结果与实验数据进行了比较,以研究该代码对此类钠火情况的有效性和适用性。 。

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