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Gamma-ray dose analysis for ITER JA WCCB-TBM

机译:ITER JA WCCB-TBM的伽马射线剂量分析

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To evaluate the nuclear properties of the International Thermonuclear Experimental Reactor (ITER)JA Water-Cooled Ceramic Breeder Test Blanket Module (WCCB-TBM) and to ensure its design conforms to nuclear licensing regulations, nuclear analyses have been performed for the WCCB-TBM's components, including its frame, shield, flange, port extension, pipe forest, bio-shield and Ancillary Equipment Unit (AEU). Utilising Monte Carlo code MCNP5.14, activation code ACT-4 and the Fusion Evaluated Nuclear Data Library FENDL-2.1, this paper focusses on the shutdown dose rate calculation for the WCCB-TBM. Monte Carlo N-Particle Transport Code (MCNP) geometry input data for the TBM are created from computer-aided design (CAD) data using the CAD/MCNP automatic conversion code GEOMIT, and other geometry input data are created manually. The 'Direct 1 -Step Monte Carlo' method is adopted for the decay gamma-ray dose rate calculation. Behind the bio-shield, the effective dose rates 1 day after shutdown are about 0.2 μSv h~(-1), which are much lower than 10 μSv h~(-1), the upper limit for human access. Behind the flange, the effective dose rates 10~6s after shutdown are 50-80μSvh~(-1), which are lower than 100μSvh~(-1), the upper limit for human hands-on access for workers performing maintenance.
机译:为了评估国际热核实验堆(ITER)JA水冷陶瓷育种试验毯模块(WCCB-TBM)的核特性,并确保其设计符合核许可规定,已对WCCB-TBM的组件进行了核分析,包括其框架,防护罩,法兰,端口扩展,管林,生物防护罩和辅助设备单元(AEU)。利用蒙特卡罗代码MCNP5.14,激活代码ACT-4和聚变评估核数据库FENDL-2.1,本文着重于WCCB-TBM的停机剂量率计算。使用CAD / MCNP自动转换代码GEOMIT根据计算机辅助设计(CAD)数据创建TBM的蒙特卡罗N颗粒运输代码(MCNP)几何输入数据,并手动创建其他几何输入数据。衰减伽马射线剂量率计算采用“直接1步蒙特卡洛”方法。在生物防护罩的后面,关机后1天的有效剂量率约为0.2μSvh〜(-1),远低于10μSvh〜(-1)(人类进入上限)。在法兰后面,停机后10〜6s的有效剂量率为50-80μSvh〜(-1),低于100μSvh〜(-1),这是进行维护工作的人员手动操作的上限。

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