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Multi-detector system approach for unattended uranium enrichment monitoring at gas centrifuge enrichment plants

机译:用于气体离心浓缩厂无人值守铀监测的多探测器系统方法

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Improving the quality of safeguards measurements at Gas Centrifuge Enrichment Plants while reducing the inspection effort is an important objective given the number of existing and new plants that need to be safeguarded. A useful tool in many safeguards approaches is the on-line monitoring of enrichment in process pipes. One requirement of such a monitor is a simple, reliable and precise passive measurement of the 186-keV line from ~(235)U. The other information required is the amount of gas in the pipe, which can be obtained by a transmission or pressure measurement. We describe our research to develop such a passive measurement system. Unfortunately, a complication arises in the interpretation of the gamma measurements, from the contribution of uranium deposits on the wall of the pipe to the 186-keV peak. A multi-detector approach to address this complication is presented where two measurements, one with signal primarily from gas and one with signal primarily from deposits, are performed simultaneously with different detectors and geometries. This allows a correction to be made to the 186-keV peak for the contribution from the deposit. We present the design of the multi-detector system and the results of the experimental calibration of the proof-of-principle prototype built at LANL.
机译:鉴于需要保护的现有工厂和新工厂的数量,在提高气体离心机浓缩厂的保障措施质量的同时,减少检查工作是一个重要目标。在许多保障措施中,一个有用的工具是在线监控过程管道中的浓缩。这种监视器的一个要求是对〜(235)U的186keV线路进行简单,可靠和精确的被动测量。所需的其他信息是管道中的气体量,可通过传输或压力测量获得。我们描述了开发这种无源测量系统的研究。不幸的是,由于管道壁上铀沉积物对186keV峰的贡献,伽马测量值的解释变得复杂起来。提出了一种解决这种复杂情况的多探测器方法,其中两次测量分别使用不同的探测器和几何形状进行,一次测量主要来自气体信号,而一次测量主要来自沉积物信号。这样就可以对186keV峰进行校正,以补偿沉积物的影响。我们介绍了多探测器系统的设计以及LANL建造的原理证明原型的实验校准结果。

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