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Design and Implementation of ~(10)B + ~3He Integrated Continuous Monitor (BHCM) to Holdup Monitoring in Glove Boxes

机译:〜(10)B +〜3He连续连续监测仪(BHCM)用于手套箱中滞留监测的设计与实现

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In order to improve the safeguards and nuclear material accountancy of holdup measurements and to establish an alternative technology for ~3He shortage, we have designed and implemented the ~(10)B + ~3He Integrated Continuous Monitor (BHCM) to continuously monitor the holdup in glove boxes at Plutonium Conversion Development Facility (PCDF). The purpose of the BHCM is to record the totals rate from holdup in a glovebox as a function of time to determine the long-term trend with the actual process operation knowledge. The BHCM will also take continuous monitoring data to prove the stability of ~(10)B technology in the relatively high gamma-ray exposure of MOX process monitoring field. Prior to starting the continuous monitoring, we could confirm the consistency between Monte Carlo N-Particle transport (MCNPX) code simulations and actual measurement on the each detector tube (~(10)B and ~3He) in the BHCM. In addition, since the BHCM is equipped with differentially moderated detectors (bottom and top), the change in the average neutron emission energy due to the change in alpha of the holdup can be measured. The change in alpha that we expect to measure is from the fluorine contamination in the glove-box. This will reduce the average neutron energy of the emitted neutrons and the neutron energy spectrometry of the BHCM can provide an estimate of the F (alpha,n) neutron fraction for the emitted neutrons. We believe that this technology can be also extended to improve measurement uncertainty in the Pu quantitative assay when using the Totals neutrons. In this paper, we present BHCM design, set up results of BHCM on the glovebox including comparison between MCNPX simulations and actual measurement and demonstration of process monitoring during operation to see the relation between Totals trend and operation status by using ~(10)B tubes.
机译:为了改善保释量测量的保障措施和核材料衡算,并为〜3He短缺建立替代技术,我们设计并实施了〜(10)B +〜3He综合连续监测仪(BHCM)来连续监测滞留量。 Conversion转化开发设施(PCDF)的手套箱。 BHCM的目的是记录手套箱中滞留的总速率与时间的关系,从而根据实际的过程操作知识确定长期趋势。 BHCM还将获取连续的监测数据,以证明〜(10)B技术在MOX过程监测领域中相对较高的伽马射线辐照量下的稳定性。在开始连续监视之前,我们可以确认BHCM中每个检测器管(〜(10)B和〜3He)上的蒙特卡罗N粒子传输(MCNPX)代码模拟与实际测量之间的一致性。此外,由于BHCM配备了差分调节检测器(底部和顶部),因此可以测量由于滞留率α的变化而导致的平均中子发射能量的变化。我们预期要测量的α值变化是由于手套箱中的氟污染引起的。这将降低发射中子的平均中子能量,BHCM的中子能谱可以提供发射中子的F(α,n)中子分数的估计值。我们相信,在使用Totals中子时,也可以扩展该技术以改善Pu定量测定中的测量不确定度。在本文中,我们介绍了BHCM设计,在手套箱上设置BHCM的结果,包括在MCNPX模拟与实际测量之间进行比较,以及在操作过程中进行过程监控的演示,以使用〜(10)B管查看总趋势与操作状态之间的关系。 。

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