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Development of On-Line Tritium Monitor Based Upon Artificial Diamond for Fusion Applications

机译:基于人工金刚石的融合Tri在线监测仪的研制

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摘要

In this paper a novel on-line tritium monitor is presented. It is made with a single crystal diamond detector (SCD) covered with a thin layer of LiF 95% enriched in Li. Thermal neutrons impinging on the LiF layer produce α and T ions which are detected by the active diamond. The pulse height spectrum shows two separated peaks due to α and T ions respectively. By a proper calibration in a reference thermal flux the number of Li atoms and thus the absolute n+Li→α+T reaction rate per unitary flux can be established. Once calibrated the detector can be used to measure the tritium production. Due to the many outstanding properties of diamond this detector could operate in the harsh working conditions of a fusion breeding blanket. A test of this detector was performed at the 14 MeV Frascati Neutron Generator (FNG). The detector was inserted inside a mock-up of the European Helium Cooled Lithium Lead (HCLL) Tritium Blanket Module (TBM), designed to validate the neutronic database for fusion application. The mock-up of the TBM was designed to perform a full set of experiments to validate tritium production code prediction comparing the experimental results with calculations. The measured tritium rates with the Li-Diamond detector are described in this paper. Comparison with calculations is in progress and will be reported in a future paper.
机译:在本文中,提出了一种新颖的在线tri监测器。它是由单晶金刚石探测器(SCD)制成的,该探测器上覆盖了一层薄薄的LiF,其中LiF含量达95%。撞击在LiF层上的热中子产生α和T离子,这些离子被活性金刚石检测到。脉冲高度谱显示分别由于α和T离子而出现的两个分离的峰。通过在参考热通量中进行适当的校准,可以确定Li原子的数量,从而确定每单位通量的绝对n + Li→α+ T反应速率。校准后,检测器可用于测量production的产量。由于钻石具有许多出色的性能,因此该探测器可以在融合繁殖毯的恶劣工作条件下运行。在14 MeV弗拉斯卡蒂中子发生器(FNG)上对该探测器进行了测试。该探测器被插入到欧洲氦冷锂铅(HCLL)Blank毯模块(TBM)的模型中,该模型旨在验证用于融合应用的中子学数据库。 TBM的模型设计用于执行全套实验,以验证production生产代码预测,并将实验结果与计算进行比较。本文介绍了用锂金刚石探测器测得的tri速率。正在与计算进行比较,并将在以后的论文中进行报告。

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