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Advances in neutronics and radiological protection of HiPER 4a

机译:HiPER 4a的中子学和放射学防护进展

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The HiPER project, phase 4a, is evolving. In this study we present the progress made in the field of neutronics and radiological protection for an integrated design of the facility. In the current model, we take into account the optical systems inside the target bay, as well as the remote handling requirements and related infrastructure, together with different shields. The last reference irradiation scenario, consisting of 20 MJ of neutron yields, 5 yields per burst, one burst every week and 30 years of expected lifetime is considered for this study. We have performed a characterization of the dose rates behavior in the facility, both during operation and between bursts. The dose rates are computed for workers, regarding to maintenance and handling, and also for optical systems, regarding to damage. Furthermore, we have performed a waste management assessment of all the components inside the target bay. Results indicate that remote maintenance is mandatory in some areas. The small beam penetrations in the shields are responsible for some high doses in some specific locations, With regards to optics, the residual doses are as high as prompt doses. It is found that the whole target bay may be fully managed as a waste in 30 years by recycling and/or clearance, with no need for burial.
机译:HiPER项目的第4a阶段正在进行中。在这项研究中,我们介绍了在集成设备的中子学和放射防护领域取得的进展。在当前模型中,我们考虑了目标舱内的光学系统,远程处理要求和相关基础设施以及不同的防护罩。这项研究考虑了最后一个参考照射场景,该场景由20 MJ中子产量,每个爆发5个产量,每周一次爆发和30年预期寿命组成。我们已经对设备在运行期间和突发之间的剂量率行为进行了表征。针对工人的维护和处理,以及针对光学系统的损伤,计算剂量率。此外,我们对目标托架内的所有组件进行了废物管理评估。结果表明,在某些区域必须进行远程维护。屏蔽层中的小光束穿透会在某些特定位置造成一些高剂量。就光学而言,剩余剂量与即时剂量一样高。已经发现,整个目标海湾可以在30年内通过回收和/或清除完全作为废物进行管理,而无需埋葬。

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