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Nuclear design of Divertor Tokamak Test (DTT) facility

机译:Vevertor Tokamak测试的核设计(DTT)设施

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摘要

Three-dimensional neutronics, activation and shutdown dose rate analyses were performed with MCNP5 Monte Carlo code, FISPACT-II inventory code and Advanced D1S dynamic tool for the design and licensing of Divertor Tokamak Test facility (DTT). Advanced shielding concepts and mitigation strategies have been studied to guarantee sufficient protection of the superconducting coils and to reduce the streaming and the neutron-induced radioactivity. The present nuclear design study provides main outcomes for the loads assessment, shielding and materials requirements and on maintenance strategy and storage of activated components.
机译:用MCNP5蒙特卡罗代码,FISPACT-II库存代码和先进的D1S动态工具进行三维中子学,激活和关闭剂量分析,用于DEVERTOR TOKAMAK测试设施(DTT)的设计和许可。已经研究了先进的屏蔽概念和缓解策略,以保证超导线圈的充分保护并降低流媒体和中子诱导的放射性。本核设计研究为负载评估,屏蔽和材料要求以及维护策略和活性组件的储存提供了主要结果。

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