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Means for stopping a criticality accident in the MELOX homogenizer

机译:用于在Melox均化器中停止关键性事故的手段

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The purpose of this paper is, starting from the criticality event scenario in the homogenizing workstation, to define the impact of different neutronic absorbers and determine the most effective one to stop the chain reaction. At least 14 litres of water are necessary for a chain reaction to occur in the MELOX homogenizer if the fissile medium and the water are heterogeneously distributed. However, if all the matter is homogeneously distributed, the accident cannot last if there is less than 59 litres of water. The first way to stop a criticality accident in the homogenizer is thus to homogenize the content of the tank. If more than 59 liters have been poured in the homogenizer, then the use of neutronic absorbers like boron or gadolinium is necessary. The absorbers can be either liquid or solid. The study shows that liquid absorbers aren't efficient enough because of their strong moderator effect. Then a study has been performed with a solid absorber: the gadolinium oxide. It is shown that less than 250 g of Gd is enough to stop a criticality accident in the homogenizer.
机译:本文的目的是从均匀化工作站的临界事件情景开始,以确定不同中性吸收剂的影响,并确定最有效的止动链反应。如果裂变介质和水是非均相分布,则在Melox均化器中发生至少14升水是在Melox均化器中发生的链反应所必需的。但是,如果所有这些物质都是均匀分布的,如果少于59升水,事故就不能持续。因此,在均化器中停止临界事故的第一种方法是使罐的含量均匀化。如果在均化器中倒入超过59升,则需要使用硼或钆等中性吸收剂。吸收剂可以是液体或固体。该研究表明,由于其强大的主持人效应,液体吸收剂并不有效。然后用固体吸收剂进行研究:氧化钆。结果表明,小于250g Gd足以阻止均化器中的临界事故。

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