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Activation analysis of the water cooling system of the LIPAc beam dump

机译:LIPAc光束收集器水冷却系统的激活分析

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LIPAc stands for Linear IFMIF Prototype Accelerator. LIPAc generates a 9 MeV deuteron beam, which is stopped at a beam dump, depositing over 1 MW of thermal power. A water cooling system has been devised for extracting this energy while keeping operational temperatures within range. The existing high neutron fluxes in the beam dump during operation produce activation of both coolant and beam stopper, which also suffers from corrosion into the coolant. The presence of radioisotopes in the cooling water leads to a radiological hazard. Water purification systems are located outside the accelerator vault and accumulate activated products during filtration, requiring a specific radiological shield to comply with target dose rates. Also devices containing large volume of activated cooling water, like N-16 decay pipes, require specific radioprotection analysis and design. This work identifies the most relevant radiation sources due to the activated cooling fluid, which may result in radiation doses to workers, and propose radioprotection measures into the design to mitigate their effect.
机译:LIPAc代表线性IFMIF原型加速器。 LIPAc产生9 MeV氘核束,在束流收集器处停止,沉积超过1 MW的热能。已经设计了水冷却系统以提取该能量,同时将操作温度保持在范围内。在运行期间,束流收集器中现有的高中子通量会同时激活冷却剂和束流塞,这也会使冷却剂腐蚀。冷却水中存在放射性同位素会导致放射性危害。净水系统位于加速器穹顶外部,并在过滤过程中积聚活化产物,需要特殊的放射防护罩以符合目标剂量率。同样,包含大量活化冷却水的设备(例如N-16衰减管)也需要进行特定的辐射防护分析和设计。这项工作确定了由于激活的冷却液而引起的最相关的辐射源,这可能导致对工人的辐射剂量,并在设计中提出了防辐射措施以减轻其影响。

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