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Activation And Afterheat Analyses For The Hcpb Test Blanket Module In Iter

机译:Iter中的Hcpb测试毯模块的激活和余热分析

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To provide a sound data basis for the safety analyses of the HCPB TBM system in ITER, the afterheat and activity inventories were assessed making use of a code system that allows performing 3D activation calculations by linking the Monte Carlo transport code MCNP and the fusion inventory code FISPACT through an appropriate interface. A suitable MCNP model of a 20 ITER torus sector with an integrated TBM of the HCPB PI (plant integration) type in the horizontal test blanket port was developed and adapted to the requirements for coupled 3D neutron transport and activation calculations. Two different irradiation scenarios were considered in the coupled 3D neutron transport and activation calculations. The first one is representative for the TBM irradiation in ITER with a total of 9000 neutron pulses over a 3 (calendar) years period. The second (conservative) irradiation scenario assumes an extended irradiation time over the full anticipated lifetime of ITER. The radioactivity inventories, the afterheat and the contact gamma dose were calculated as function of the decay time. Data were processed for the total activity, afterheat and contact dose rates of the TBM, its constituting components and materials.
机译:为了为ITER中HCPB TBM系统的安全分析提供可靠的数据基础,对余热和活动清单进行了评估,并使用了一个代码系统,该系统允许通过链接蒙特卡洛运输代码MCNP和融合清单代码来执行3D激活计算通过适当的接口进行FISPACT。开发了一个合适的20 ITER圆环扇形MCNP模型,并在水平测试毯口中集成了HCPB PI(植物整合)类型的TBM,并适应3D中子耦合和激活计算的要求。在耦合的3D中子传输和活化计算中考虑了两种不同的照射方案。第一个代表ITER中的TBM辐照,历时3年(日历),共9000个中子脉冲。第二种(保守)照射方案假设在ITER的整个预期寿命内都有较长的照射时间。计算放射性清单,余热和接触伽马剂量作为衰变时间的函数。处理了TBM,其组成成分和材料的总活性,余热和接触剂量率的数据。

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