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Definition of the Q-PETE experiment for investigation of hydrogen isotopes permeation through the metal structures of a DEMO HCPB breeder zone

机译:Q-PETE实验的定义,以研究氢同位素渗透通过DEMO HCPB繁殖区的金属结构

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The Q-PETE (Hydrogen Permeation and Transport Experiment) at KIT is set up to investigate hydrogen isotopes permeation through structural materials with specific relevance to the HCPB (helium cooled pebble bed) DEMO blanket breeder zone. The results are intended to provide validation data for simulation codes. A second objective is the direct determination of material data. In the first stage deuterium permeation through a Eurofer membrane will be studied using a mass spectrometry method.This paper describes the definition, the design development, the experimental setup and the characterization of the mass spectroscopy method foreseen for the Q-PETE experiment. The permeator setup was designed taking into account results from uncertainty optimization efforts and manufacturing aspects. Based on the decided geometry, engineering analyses concerning thermal responses and tritium transport were performed. The aim of the characterization of the mass spectroscopy method is to provide a proper foundation for the uncertainty analyses, as well as to optimize the technique. The noise level was related to relevant spectrometer operation parameters. On this basis measures to reduce the background level for the deuterium concentration by a factor of 5 could be found and implemented to the spectrometer analysis procedure.
机译:设立了位于KIT的Q-PETE(氢渗透和输运实验),以研究与HCPB(氦冷却卵石床)DEMO毯子繁殖区特别相关的结构材料的氢同位素渗透。结果旨在为仿真代码提供验证数据。第二个目标是直接确定材料数据。在第一阶段,将使用质谱方法研究氘通过Eurofer膜的渗透。本文介绍了Q-PETE实验所设想的质谱方法的定义,设计发展,实验装置和表征。设计渗透器时要考虑到不确定性优化工作和制造方面的结果。根据确定的几何形状,进行了有关热响应和tri传输的工程分析。质谱方法表征的目的是为不确定性分析提供适当的基础,并优化该技术。噪声水平与相关的光谱仪操作参数有关。在此基础上,可以找到将氘浓度的背景水平降低5倍的措施,并将其实施到光谱仪分析程序中。

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