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Neutronics studies for the novel design of lower port in DEMO

机译:中子学研究DEMO下端口的新颖设计

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The conceptual design activity of the Demonstration Fusion Power Reactor (DEMO) is in progress in the Power Plant Physics and Technology (PPPT) programme, within the EUROfusion Consortium. In this work neutronics studies, fundamental for the nuclear design of DEMO, are presented for a novel design of the lower port (LP). Two possible configurations of the LP have been investigated: the vacuum pumping port, with the pumping unit located inside the port, and an empty port designed for remote handling. For both configurations 3-dimensional Monte Carlo calculations have been performed with MCNP5 to assess the neutron flux inside and around the port and the nuclear heating in sensitive components, such as the toroidal field coil conductor, the vacuum pumps, the shielding elements and the port closure plate. Different shielding configurations have been considered, by adding shielding blocks at the lower port entrance. Single and double wall port walls and closure plates with different thickness have been studied to reduce nuclear loads and neutron flux. Nuclear quantities under analysis were found to be within the limit for all the components, with the exception of the nuclear heating on the toroidal field coils. The absence of any shield of the divertor cassette pumping duct, as in the DEMO 2017 baseline configuration, is responsible for a huge amount of radiation streaming inside the pumping duct that can cause the excess of heating on the coil conductor. The use of a liner, or of an equivalent shielding component, is proposed, but further improvements are needed to keep the nuclear loads on the coil conductor within the limit.
机译:示范聚变反应堆(DEMO)的概念设计活动正在EUROfusion财团的电厂物理与技术(PPPT)计划中进行。在这项工作中,提出了DEMO核设计基础的中子学研究,用于下端口(LP)的新颖设计。已研究了LP的两种可能配置:真空泵端口,其中泵单元位于端口内部,以及一个用于远程处理的空端口。对于这两种配置,已经使用MCNP5进行了三维蒙特卡罗计算,以评估端口内部和周围的中子通量以及敏感组件(例如环形场线圈导体,真空泵,屏蔽元件和端口)中的核加热。封口板。通过在下部端口入口处添加屏蔽块,已经考虑了不同的屏蔽配置。已经研究了具有不同厚度的单壁和双壁端口壁以及封闭板,以减少核负荷和中子通量。发现所分析的核数量在所有组件的限制范围内,但环形场线圈上的核加热除外。像DEMO 2017基准配置一样,分流器暗盒泵送管道没有任何屏蔽,是导致泵送管道内大量辐射流的原因,这可能导致线圈导体上的热量过多。提议使用衬套或等效的屏蔽部件,但是需要进一步的改进以将线圈导体上的核负荷保持在极限内。

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