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Low energy and high energy dumps for ELI-NP accelerator facility: rational and Monte-Carlo calculations? results

机译:ELI-NP加速器设施的低能耗和高能耗排放:合理计算和蒙特卡洛计算?结果

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ELI-NP will be a new international research infrastructure facility for laser-based Nuclear Physics to be built in Magurele, south west of Bucharest, Romania. For the machine to operate as an intense γ rays’ source based on Compton back-scattering, electron beams are employed, undergoing a two stage acceleration to 320 MeV and 740 MeV (and, with an eventual energy upgrade, also to 840 MeV) beam energies. In order to assess the radiation safety issues, concerning the effectiveness of the dumps in absorbing the primary electron beams, the generated prompt radiation field and the residual dose rates coming from the activation of constituent materials, as well as the shielding of the adjacent environments against both prompt and residual radiation fields, an extensive design study by means of Monte Carlo simulations with FLUKA code was performed, for both low energy 320 MeV and high energy 720 MeV (840 MeV) beam dumps. For the low energy dump we discuss also the rational of the choice to place it in the building basement, instead of installing it in one of the shielding wall at the machine level, as it was originally conceived. Ambient dose equivalent rate constraints, according to the Rumenian law in force in radiation protection matter were 0.1 /iSv/h everywhere outside the shielding walls and 1.4 μiSv/h outside the high energy dump area. The dumps’ placements and layouts are shown to be fully compliant with the dose constraints and environmental impact.
机译:ELI-NP将成为新的国际研究基础设施,用于基于激光的核物理,将在罗马尼亚布加勒斯特西南的Magurele建造。为了使机器作为基于康普顿反向散射的强烈γ射线源工作,采用了电子束,电子束经历了两阶段的加速,分别达到320 MeV和740 MeV(最终能量也提高到了840 MeV)。能量。为了评估辐射安全问题,涉及到垃圾场在吸收初级电子束方面的有效性,所产生的迅速辐射场和来自激活成分材料的剩余剂量率,以及对相邻环境的屏蔽无论是瞬态辐射场还是残留辐射场,都通过蒙特卡洛仿真和FLUKA代码对低能320 MeV和高能720 MeV(840 MeV)的束流进行了广泛的设计研究。对于低能耗的垃圾堆,我们还讨论了将其放置在建筑物地下室中的合理选择,而不是像最初设想的那样将其安装在机器级别的屏蔽墙之一中。根据Rumenian法则,在辐射防护物质中所处的环境剂量当量率约束为:在屏蔽壁之外的所有位置均为0.1 / iSv / h,在高能量释放区域以外的位置为1.4μiSv/ h。垃圾场的布置和布局显示出完全符合剂量限制和环境影响。

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