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Shutdown Dose Rate Analysis for the long-pulse D-D Operation Phase in KSTAR

机译:KSTAR长脉冲D-D操作阶段的关机剂量率分析

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摘要

KSTAR is a medium size fully superconducting tokamak. The deuterium-deuterium (D-D) reaction in the KSTAR tokamak generates neutrons with a peak yield of 3.5x1016 per second through a pulse operation of 100 seconds. The effect of neutron generation from full D-D high power KSTAR operation mode to the machine, such as activation, shutdown dose rate, and nuclear heating, are estimated for an assurance of safety during operation, maintenance, and machine upgrade. The nuclear heating of the in-vessel components, and neutron activation of the surrounding materials have been investigated. The dose rates during operation and after shutdown of KSTAR have been calculated by a 3D CAD model of KSTAR with the Monte Carlo code MCNP5 (neutron flux and decay photon), the inventory code FISPACT (activation and decay photon) and the FENDL 2.1 nuclear data library.
机译:KSTAR是一种中等大小的全源托卡马克。 Kstar Tokamak中的氘 - 氘(D-D)反应通过100秒的脉冲操作产生3.5×1016的峰收率3.5×1016的中子。从全D-D高功率KSTAR操作模式到机器的中子生成的效果估计在运行,维护和机器升级期间保证安全性,估计安全性,关闭剂量率和核加热。研究了血管内部部件的核加热和周围材料的中子活化。操作期间的剂量率和KSTAR的关闭已经通过KSTAR的3D CAD模型与Monte Carlo Code MCNP5(中子磁通和衰减光子),库存代码Fispact(激活和腐烂光子)和Fendl 2.1核数据计算图书馆。

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