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SENSITIVITY STUDY OF INDEPTH FOR VERIFICATION OF FACILITY SPENT NUCLEAR FUEL DECLARATIONS

机译:验证设施用核燃料声明的指数敏感性研究

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The Inverse Depletion Theory (INDEPTH) code is one of the tools being used to analyze the traditional nondestructive assay (NDA) measurements and verify the initial enrichment, burnup, and cooling time values of spent nuclear fuel (SNF) declared by facilities. The INDEPTH code attempts to reconstruct the initial enrichment and operating history by using the Oak Ridge Isotope Generation (ORIGEN) code to simulate irradiation and cooling of the fuel. This work examined the sensitivity of INDEPTH results to variations in irradiation conditions. Three types of measured data were simulated to identify possible sources of systematic error. An absolute gamma measurement with a gross neutron count produced more accurate answers than either the relative gamma measurement or the absolute gamma measurement by itself in most cases. However, long shutdown times between irradiation cycles were found to greatly affect the accuracy, with the absolute gamma plus gross neutron counts case losing the most accuracy. In these cases, the added neutron data either did not significantly improve the results or made them worse.
机译:逆耗竭理论(INDEPTH)代码是用于分析传统无损检测(NDA)测量并验证设施申报的乏核燃料(SNF)的初始富集,燃烧和冷却时间值的工具之一。 INDEPTH代码试图通过使用Oak Ridge同位素生成(ORIGEN)代码来模拟燃料的辐照和冷却来重建初始浓缩和运行历史。这项工作检查了INDEPTH结果对照射条件变化的敏感性。模拟了三种类型的测量数据,以识别系统误差的可能来源。在大多数情况下,具有总中子计数的绝对伽马测量值比相对伽马测量值或绝对伽马测量值自身产生的答案更准确。但是,发现辐照周期之间的关闭时间过长会极大地影响精度,绝对伽玛值加上总中子计数会导致精度最高。在这些情况下,增加的中子数据要么不能显着改善结果,要么会使结果更糟。

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