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Iron NRT- and arc-displacement cross sections and their covariances

机译:铁NRT和弧形位移的横截面及其协方差

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Displacement damage cross sections have been calculated for natural iron and its constituent individual isotopes based on the latest versions of the evaluated neutron data libraries ENDF/B-VIII.0 and TENDL-2017 using the conventionalNRTand recently introduced athermal recombination-corrected (arc)displacement concepts. Their covariance matrices, which quantify the uncertainties and the associated energy-energy correlations, were assessed for the first time based on TENDL-2017 random data files representing the covariances of the underlying nuclear data. In addition to the nuclear data, the covariances due to the ion energy partition, the primary defect survival efficiency and the lattice threshold energy were also propagated to the damage quantities. Thearc-dpa was computed employing all available results from molecular dynamics and binary collision simulations. The comparison of the spectrum-averagedarc-dpa with the few available measurements at fission reactors has demonstrated a reasonable agreement within the experimental and calculation uncertainties. The comparison with the currentNRT-dpa standard, provided by ASTMupto 20?MeV but without uncertainty, has indicated differences up to 8% above 0.5?keV and 60% below.
机译:使用最新的NRT和最新引入的热重组校正(arc)位移,根据最新版本的评估中子数据库ENDF / B-VIII.0和TENDL-2017,计算了天然铁及其组成同位素的位移破坏截面。概念。基于代表基础核数据协方差的TENDL-2017随机数据文件,首次评估了它们的协方差矩阵,该矩阵量化了不确定性和相关的能量-能量相关性。除了核数据,由于离子能量分配,主要缺陷生存效率和晶格阈值能量引起的协方差也传播到损伤量。使用分子动力学和二元碰撞模拟获得的所有可用结果来计算thearc-dpa。裂变反应堆的光谱平均数与dpa的比较与少量可用测量值的比较表明,在实验和计算不确定性内有合理的一致性。与ASTMupto 20?MeV提供的当前NRT-dpa标准进行比较,但没有不确定性,表明差异在0.5?keV以上可达8%,在低于60?Me可达60%。

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