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Multiplication and Presence of Shielding Material from Time-Correlated Pulse-Height Measurements of Subcritical Plutonium Assemblies

机译:次临界P组件的与时间相关的脉冲高度测量中屏蔽材料的存在和存在

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摘要

We present the results from the first measurements of the Time-Correlated Pulse-Height (TCPH) distributions from 4.5 kg sphere of α-phase weapons-grade plutonium metal in five configurations: bare, reflected by 1.27 cm and 2.54 cm of tungsten, and 2.54 cm and 7.62 cm of polyethylene. A new method for characterizing source multiplication and shielding configuration is also demonstrated. The method relies on solving for the underlying fission chain timing distribution that drives the spreading of the measured TCPH distribution. We found that a gamma distribution fits the fission chain timing distribution well and that the fit parameters correlate with both multiplication (rate parameter) and shielding material types (shape parameter). The source-to-detector distance was another free parameter that we were able to optimize, and proved to be the most well constrained parameter. MCNPX-PoliMi simulations were used to complement the measurements and help illustrate trends in these parameters and their relation to multiplication and the amount and type of material coupled to the subcritical assembly.
机译:我们展示了从4.5 kg的α相武器级p金属球体在以下五种配置下与时间相关的脉冲高度(TCPH)​​分布的首次测量结果:五种配置:裸露,由1.27 cm和2.54 cm的钨反射;以及2.54厘米和7.62厘米的聚乙烯。还演示了表征源倍增和屏蔽配置的新方法。该方法依赖于解决潜在的裂变链时序分布,该裂变链时序分布驱动测量的TCPH分布的扩展。我们发现伽马分布很好地拟合了裂变链的时间分布,并且拟合参数与乘法(速率参数)和屏蔽材料类型(形状参数)都相关。源到检测器的距离是我们能够优化的另一个自由参数,并且被证明是约束最充分的参数。 MCNPX-PoliMi模拟用于补充测量结果,并帮助说明这些参数的趋势及其与乘法的关系以及与次临界组件耦合的材料的数量和类型。

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