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IMPACT OF HIGH-ENERGY NUCLEAR DATA ON RADIOPROTECTION IN SPALLATION SOURCES

机译:高能核数据对辐射源中放射防护的影响

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The high-energy programme of the HINDAS European project has provided a large amount of experimental data and led to a better understanding of the spallation reaction mechanism and the development of more reliable spallation models. These data, or the new models, which have been implemented into high-energy transport codes, can be now used to predict with a larger confidence or, at least with a known uncertainty, some important quantities for the design of spallation sources. In this paper, examples concerning the residue production in a Pb-Bi target and the high-energy neutrons escaping the target are presented. In the first case, the activity and the amount of radioactive volatile elements that can be released, in case of a containment failure, are calculated and the level of confidence of the calculation is assessed. The second example shows that the models correctly predict the high-energy tail of the neutron spectrum, which is important for radioprotection in the facility.
机译:HINDAS欧洲项目的高能计划提供了大量的实验数据,使人们对散裂反应机理有了更深入的了解,并开发了更可靠的散裂模型。这些数据或已被应用到高能输运代码中的新模型,现在可以用于更大的置信度,或者至少在已知的不确定性下,用于散裂源设计的一些重要预测。在本文中,给出了有关Pb-Bi目标中残留物产生和逃逸目标的高能中子的例子。在第一种情况下,在密闭失败的情况下,计算了可释放的放射性挥发性元素的活度和数量,并评估了计算的置信度。第二个例子表明,该模型正确地预测了中子谱的高能尾部,这对于设施中的辐射防护很重要。

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