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Monte Carlo based operational and shutdown dose rate calculations of HT-7U tokamak

机译:基于蒙特卡洛的HT-7U托卡马克运行和停机剂量率计算

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The superconducting tokamak HT-7U will perform D-D plasma experiments and the production rate of 2.45 MeV neutrons will achieve the level of 10~(15) n/s. The dose rates during operation and after shutdown of HT-7U have been calculated based on a detailed three-dimensional model with the Monte Carlo code MCNP-4C, the inventory code FISPACT and the FENDL-2 nuclear data library. The so-called R2S method was used to perform the shutdown dose rate analyses. The results confirm that personnel access into the tokamak hall must be prohibited during operation. In addition the results show that the dose rate level near the outer wall of the tokamak hall slightly exceeds the dose limit. Additional shielding may be required. The shutdown dose rates of various experimental campaigns have been calculated and the waiting times for personnel access into the hall have been assessed. The results indicate that the in-vessel components of HT-7U will be considerably activated by neutrons and the shutdown dose rate level around the machine after long D-D plasma discharges is serious within a certain range of cooling time regarding the maintenance work.
机译:超导托卡马克HT-7U将进行D-D等离子体实验,2.45 MeV中子的生产率将达到10〜(15)n / s。 HT-7U在运行期间和停机后的剂量率已基于带有蒙特卡罗代码MCNP-4C,库存代码FISPACT和FENDL-2核数据库的详细三维模型进行了计算。所谓的R2S方法用于执行关机剂量率分析。结果表明,在操作过程中必须禁止人员进入托卡马克大厅。另外,结果表明,托卡马克厅外壁附近的剂量率水平略高于剂量极限。可能需要额外的屏蔽。计算了各种实验活动的关闭剂量率,并评估了人员进入大厅的等待时间。结果表明,在维护工作的一定冷却时间范围内,长时间D-D等离子体放电后,HT-7U的容器内组分将被中子充分激活,并且机器周围的停机剂量率水平很严重。

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