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Analysis on the Role of RSG-GAS Pool Cooling System during Partial Loss of Heat Sink Accident

机译:rsg - 气池冷却系统在散热器事故中丢失过程中的作用分析

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RSG-GAS is a 30 MW reactor that is mostly used for radioisotope production and experimental activities. Recently, it is regularly operated at half of its capacity for efficiency reason. During an accident, especially loss of heat sink, the role of its pool cooling system is very important to dump decay heat. An analysis using single failure approach and partial modeling of RELAP5 performed by S. Dibyo, 2010 shows that there is no significant increase in the coolant temperature if this system is properly functioned. However lessons learned from the Fukushima accident revealed that an accident can happen due to multiple failures. Considering ageing of the reactor, in this research the role of pool cooling system is to be investigated for a partial loss of heat sink accident which is at the same time the protection system fails to scram the reactor when being operated at 15 MW. The purpose is to clarify the transient characteristics and the final state of the coolant temperature. The method used is by simulating the system in RELAP5 code. Calculation results shows the pool cooling systems reduce coolant temperature for about 1 K as compared without activating them. The result alsoreveals that when the reactor is being operated at half of its rated power, it is still in safe condition for a partial loss of heat sink accident without scram.
机译:RSG气体是30兆瓦的反应器,主要用于放射性同位素的生产和实验活动。最近,定期运营其效率原因的一半。在发生事故期间,特别是散热器的损失,池冷却系统的作用对于倾倒腐烂的热量非常重要。通过单次故障方法和S. Dibyo进行的Relap5部分建模的分析表明,如果该系统正常运行,则冷却剂温度没有显着增加。然而,从福岛事故中汲取的经验教训表明,由于多种故障,事故可能会发生。考虑到反应堆的老化,在本研究中,将研究池冷却系统的作用,以进行散热器事故的部分损失,同时保护系统在15兆瓦操作时防护系统未能扰流反应器。目的是阐明瞬态特性和冷却剂温度的最终状态。使用的方法是通过在RETAP5代码中模拟系统。计算结果表明,在不激活它们的情况下,池冷却系统减少约1k的冷却剂温度。结果AlsoreVeals认为,当反应器在其额定功率的一半运行时,它仍然处于没有扰流的情况下的散热器事故的部分损失。

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