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Detection of tiny amounts of fissile materials in large-sized containers with radioactive waste

机译:用放射性废物检测大容器中的少量易裂变材料

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The paper is devoted to non-destructive control of tiny amounts of fissile materials in large-sized containers filled with radioactive waste (RAW). The aim of this work is to model an active neutron interrogation facility for detection of fissile ma-terials inside NZK type containers with RAW and determine the minimal detectable mass of U-235 as a function of various param-eters: matrix type, nonuniformity of container filling, neutron gen-erator parameters (flux, pulse frequency, pulse duration), meas-urement time. As a result the dependence of minimal detectable mass on fissile materials location inside container is shown. Nonu-niformity of the thermal neutron flux inside a container is the main reason of the space-heterogeneity of minimal detectable mass in-side a large-sized container. Our experiments with tiny amounts of uranium-235 (<1 g) confirm the detection of fissile materials in NZK containers by using active neutron interrogation technique.
机译:本文致力于无损控制装满放射性废物(RAW)的大型容器中的少量易裂变材料。这项工作的目的是建立一个有源中子探询设施的模型,以利用RAW检测NZK型容器内的易裂变材料,并确定U-235的最小可检测质量与各种参数的函数关系:矩阵类型,非均匀性容器填充,中子发生器参数(通量,脉冲频率,脉冲持续时间),测量时间。结果,显示了最小可检测质量对容器内易裂变材料位置的依赖性。容器内部热中子通量的不均匀性是导致大型容器内部最小可检测质量空间异质性的主要原因。我们用少量铀235(<1 g)进行的实验证实了使用主动中子探查技术检测NZK容器中易裂变材料的能力。

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