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Hybrid K-Edge Densitometer Monte Carlo Simulations for Safeguarding Pyroprocessing Activities

机译:混合K-Edge密度计Monte Carlo模拟,用于保障易用的活动

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Since pyroprocessing exists only on a pilot scale, the International Atomic Energy Agency (IAEA) has not yet developed an approach for safeguarding planned facilities. Oak Ridge National Laboratory is home to the Hybrid K-Edge/X-Ray Fluorescence Densitometer (HKED) system, which may be used to support safeguards verification measurements during pyroprocessing activities for nuclear material accountancy. Using a combination of K-edge densitometry and X-ray fluorescence techniques, the HKED quantifies input and product heavy metal actinide elements, such as uranium and plutonium in reprocessing streams. To support this effort, Monte Carlo simulations of the ORNL HKED have been designed for extending the HKED system beyond solutions for aqueous systems with uranium and plutonium ratios of 100:1 to include additional minor actinides from pyroprocessing (neptunium/americium) in spent fuel and where uranium and plutonium ratios approach 1:1. To ensure the simulated spectra are correctly modeled, a comparative analysis has been performed between simulated and experimental results using a new approach. A sensitivity study has been performed on the simulated model to determine impact from a range of factors: e.g. the source directional biasing effects on the spectrum, spectral interference such as absorption and enhancement from matrix effects, and the underlying physics models.
机译:由于冻害仅存在于飞行员规模,因此国际原子能机构(原子能机构)尚未制定一种维护计划设施的方法。橡树岭国家实验室是家里的混合K边界/ X射线荧光密度计(HKED)系统,该系统可高温冶金处理活动,核材料衡算期间使用,以验证测量的支持保障。使用K边缘密度测定法和X射线荧光技术的组合,HKED量化输入和产品重金属致动元件,例如铀和钚在再处理流中。为了支持这种努力,ORNL HKED的Monte Carlo模拟已经被设计用于扩展HKED系统超出了具有100铀和钚比水性体系的解决方案:1中用过的燃料包括从高温冶金处理(镎/镅)附加次锕系元素和其中铀和钚的比例接近1:1。为了确保模拟光谱正确建模,一直采用一种新的方法模拟和实验结果之间执行比较分析。敏感性研究已在模拟模型被执行以从一系列因素决定的影响:例如在光谱的源定向偏置效应,光谱干扰诸如吸收和增强从基体效应,和底层物理模型。

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