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首页> 外文期刊>Journal of the Korean Physical Society >Assessment of the Radiation Dose Level of the PAL-XFEL Hard X-ray Beamlines under Accident Conditions
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Assessment of the Radiation Dose Level of the PAL-XFEL Hard X-ray Beamlines under Accident Conditions

机译:在事故条件下评估PAL-XFEL硬X射线束线的辐射剂量水平

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A PAL-XFEL is a free electron laser using 10-GeV, 0.2-nC electron beams. The failure of the main dump magnet can cause a serious radiation risk because electron beams go straight to the experimental area of the hard X-ray beamlines and high-energy radiation is produced in the forward direction. This type of accident should be prevented through a suitable shielding design and a Personal Safety and Interlock System. A proper safety design based on a reliable method for estimating the radiation dose level is as important as anything else. In this study, the leakage dose rate was estimated under predictable accident conditions, and the suitable radiation shielding of the hard X-ray beamlines was designed using a well-known Monte Carlo code, FLUKA, in preparation for an accident. The result was verified by measurements of the radiation dose rate during commissioning period and was compared with the result obtained by using a semi-empirical code, SHIELD11. The measured radiation dose rates in the lateral direction under failure of the main dump magnet were agreed to the radiation dose rates calculated by using the SHIELD11 well, and the FLUKA results were relatively overestimated. In addition, the assessment error of the neutron dose rate depending on the type of neutron rem-counter was verified for high-energy neutrons. The effect of an accidental loss is negligible compared to the annual dose received by beamline users.
机译:PAL-XFEL是一种使用10-GEV,0.2-NC电子束的自由电子激光器。主倾磁磁铁的故障可能导致严重的辐射风险,因为电子束直线地向硬X射线波束线的实验区域,并且在向前方向产生高能辐射。应通过合适的屏蔽设计和个人安全和互锁系统来防止这种类型的事故。基于可靠方法的适当的安全设计,用于估计辐射剂量水平与其他任何东西都很重要。在这项研究中,估计在可预测的事故条件下估计泄漏剂量率,并且使用众所周知的蒙特卡罗码,侥幸,以制备事故,设计了硬X射线波束线的合适辐射屏蔽。通过测量调试期间的辐射剂量率测量并将结果与​​通过使用半经验代码(使用半经验代码)的结果进行了验证。在主倾倒磁体的故障下的横向下测量的辐射剂量速率同意通过使用屏蔽11的井计算的辐射剂量率,并且荧光菌菌会结果相对估计。此外,对于高能中子,验证了取决于中子计数器类型的中子剂量率的评估误差。与Beamline用户收到的年剂量相比,意外损失的效果可忽略不计。

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