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SIMULATING SODIUM POOL NATURAL CIRCULATION IN RVACS OPERATION USING CFD

机译:使用CFD在RVACS操作中模拟钠池的自然循环

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Reactor vessel auxiliary cooling system (RVACS) has been developed to make diverse safety system for sodium-cooled fast reactor (SFR). In the loss of flow (LOF) accident condition, decay heat from the core is transferred to the reactor vessel by natural circulation inside of the sodium pool. The reactor vessel transfers its heat to the containment vessel by the conduction and radiation through the gap between the reactor vessel and the containment. Finally, the containment vessel releases its heat to the air flow from the atmosphere, which is the ultimate heat sink, by means of the RVACS. Although natural circulation of sodium is an important phenomenon because it determines the sodium boiling, it has not been sufficiently researched for the case of the RVACS. Therefore, in this study, natural circulation ofthe sodium in the LOF condition was analyzed experimentally to evaluate the maximum sodium temperature in the LOF. Water was used as a simulant for the sodium with the reduced scale. The experimental apparatus was scaled down about 1/25 by length, focusing on the modified Boussinesq number which represents the ratio of heat transfer by the natural circulation to the conduction. Because the modified Boussinesq number was the same with that of the actual reactor, overall temperature distribution in scale-downed apparatus with water would be similar to that of the sodium pool. Difference between the maximum and the minimum temperature of the water pool in the experiment was about 0.7°C, which corresponds to 5.1°C temperature difference of the sodium in LOF condition of an actual reactor with the operation of the RVACS. By comparing temperature difference.
机译:已经开发了反应堆容器辅助冷却系统(RVACS),以为钠冷快堆(SFR)提供多样化的安全系统。在失流(LOF)事故情况下,来自堆芯的衰减热通过钠池内部的自然循环传递到反应堆容器中。反应堆容器通过传导和辐射通过反应堆容器和安全壳之间的间隙将其热量传递到安全壳。最后,安全壳通过RVACS将热量释放到大气中,而大气是最终的散热器。尽管钠的自然循环是一个重要的现象,因为它决定了钠的沸腾程度,但对于RVACS的情况,尚未进行充分的研究。因此,在本研究中,通过实验分析了LOF条件下钠的自然循环,以评估LOF中的最高钠温度。水被用作缩小比例的钠的模拟物。实验装置的长度按比例缩小了约1/25,重点放在修正的Boussinesq数上,该数表示自然循环与传导的热传递之比。由于修改后的Boussinesq数与实际反应堆的数值相同,因此在按比例缩小的装有水的装置中,总的温度分布将与钠池的温度分布相似。实验中水池的最高温度和最低温度之间的差异约为0.7°C,这对应于实际RVSV运转的反应堆在LOF条件下钠的温度差异为5.1°C。通过比较温差。

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