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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Statistical estimation of the performance of a fast-neutron multiplicity system for nuclear material accountancy
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Statistical estimation of the performance of a fast-neutron multiplicity system for nuclear material accountancy

机译:用于核材料核算的快速中子多重系统性能的统计估计

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Statistical analyses have been performed to develop bounding estimates of the expected performance of a conceptual fast-neutron multiplicity system (FNMS) for assaying plutonium. The conceptual FNMS design includes 32 cubic liquid scintillator detectors, measuring 7.62 cm per side, configured into 4 stacked rings of 8 detectors each. Expected response characteristics for the individual FNMS detectors, as well as the response characteristics of the entire FNMS, were determined using Monte Carlo simulations based on prior validation experiments. The results from these simulations were then used to estimate the Pu assay capabilities of the FNMS in terms of counting time, assay mass, and assay mass variance, using assay mass variance as a figure of merit. The analysis results are compared against a commonly used thermal-neutron coincidence counter. The advantages of using a fast-neutron counting system versus a thermal-neutron counting system are significant. Most notably, the time required to perform an assay to an equivalent assay mass variance is greatly reduced with a fast-neutron system, by more than an order of magnitude compared with that of the thermal-neutron system, due to the reduced probability of random summing with the fast system. The improved FNMS performance is especially relevant for assays involving Pu masses of 10 g or more.
机译:已经进行了统计分析,以开发用于测定p的概念性快速中子多重性系统(FNMS)的预期性能的边界估计。 FNMS的概念设计包括32个立方液体闪烁探测器,每侧测量7.62厘米,配置成4个堆叠的环,每个环8个探测器。单个FNMS检测器的预期响应特性以及整个FNMS的响应特性,是根据先前的验证实验使用Monte Carlo模拟确定的。然后将这些模拟的结果用于以计数时间,测定质量和测定质量方差估算FNMS的Pu测定能力,并使用测定质量方差作为评价指标。将分析结果与常用的热中子符合计数器进行比较。与快速中子计数系统相比,使用快速中子计数系统具有明显的优势。最值得注意的是,与快速中子系统相比,快速中子系统极大地减少了进行等效分析质量变化所需的时间,比热中子系统减少了一个数量级以上,这是因为随机概率降低了总结快速的系统。改进的FNMS性能尤其适用于涉及10 g或更大Pu质量的测定。

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