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BENCHMARK STUDIES OF INDUCED RADIOACTIVITY AND REMANENT DOSE RATES PRODUCED IN LHC MATERIALS

机译:LHC材料产生的诱导放射性和剩磁剂量率的基准研究

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Samples of materials that will be used for elements of the LHC machine as well as for shielding and construction components were irradiated in the stray radiation field of the CERN-EU high-energy Reference Field facility. The materials included various types of steel, copper, titanium, concrete and marble as well as light materials such as carbon composites and boron nitride. Emphasis was put on an accurate recording of the irradiation conditions, such as irradiation profile and intensity, and on a detailed determination of the elemental composition of the samples. After the irradiation, the specific activity induced in the samples as well as the remanent dose rate were measured at different cooling times ranging from about 20 minutes to two months. Furthermore, the irradiation experiment was simulated using the FLUKA Monte Carlo code and specific activities. In addition, dose rates were calculated. The latter was based on a new method simulating the production of various isotopes and the electromagnetic cascade induced by radioactive decay at a certain cooling time. In general, solid agreement was found, which engenders confidence in the predictive power of the applied codes and tools for the estimation of the radioactive nuclide inventory of the LHC machine as well as the calculation of remanent doses to personnel during interventions.
机译:将用于为屏蔽和结构部件的LHC机以及元件的材料样品中的CERN-EU高能参考场设施的杂散辐射场照射。的材料包括各种类型的钢,铜,钛,混凝土和大理石以及光材料,诸如碳纤维复合材料和氮化硼。着重强调了的照射条件,如照射轮廓和强度的精确记录,而在样品的元素组成的详细判定。照射后,将样品以及剩磁剂量率在诱导的特异性活性在不同的冷却时间范围从约20分钟至两个月进行测定。此外,照射实验是使用FLUKA蒙特卡洛代码和特定活动的模拟。此外,计算剂量率。后者是基于一种新的方法模拟生产各种同位素的,并在一定的冷却时间诱导放射性衰变电磁级联。在一般情况下,固体协议被发现,这激发群众的信心在应用代码和工具的预测能力为LHC机的放射性核素库存以及剩余剂量的干预措施期间计算人才的估计。

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