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NUCLEAR POWER PLANT FIRES AND EXPLOSIONS: PART III - HAMAOKA PIPING EXPLOSION

机译:核电站燃料和爆炸:第三部分-滨冈管道爆炸

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An explosion that burst a steel pipe like a paper fire cracker at the Hamaoka Nuclear Power Station, Unit-1 is investigated in this paper, which is one of a series of papers investigating fires and explosions in nuclear power plants. The accumulation of flammable hydrogen and oxygen due to radiolysis has long been recognized as a potential problem in nuclear reactors, where radiolysis is the process that decomposes water into hydrogen and oxygen by radiation exposure in the reactor core. Hydrogen ignition and explosion has long been considered the cause of this Hamaoka piping explosion, but the cause of ignition was considered to be a minor fluid transient, or water hammer, that ignited flammable gasses in the piping, which was made possible by the presence of catalytic noble metals inside the piping. The theory presented here is that a much larger pressure surge occurred due to water hammer during operations. In fact, calculations presented here serve as proof of principle that this explosion mechanism may be present in many operating nuclear power plants. Chubu Electric, the operator of the Hamaoka plant, took appropriate actions to prevent this type of explosion in their plants in the future. In fact, this accident indicates one potential preventive action from explosions for other operating plants. Ensure that a system high point is available, where mixed hydrogen and oxygen may be removed during routine operations and during off-normal accident conditions, such as nuclear reactor meltdowns and loss of coolant accidents.
机译:本文研究了在Hamaoka核电站1号机组中发生的爆炸,该爆炸使钢管像纸制的爆竹一样破裂,这是调查核电站火灾和爆炸的一系列论文之一。长期以来,人们一直认为由于辐射分解引起的易燃氢和氧的积累是核反应堆中的潜在问题,其中辐射分解是通过反应堆堆芯中的辐射暴露将水分解为氢和氧的过程。长期以来,氢气点火和爆炸一直被认为是这种Hamaoka管道爆炸的原因,但点火原因被认为是较小的流体瞬变或水锤,它点燃了管道中的可燃气体,这是由于存在氢气而引起的。管道内的催化贵金属。这里提出的理论是,在操作过程中由于水锤而产生了更大的压力波动。实际上,这里提出的计算是该爆炸机制可能存在于许多运行中的核电厂中的原理证明。滨冈工厂的运营商中部电气(Chubu Electric)采取了适当的措施,以防止将来在其工厂中发生此类爆炸。实际上,该事故表明爆炸可能对其他运行中的工厂采取预防措施。确保有一个系统高点,在常规操作期间和非正常事故情况下(例如核反应堆融化和冷却剂事故损失),可能会除去混合的氢气和氧气。

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