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Experiment and simulation on Zr2Fe bed for tritium capturing

机译:ZR2FE床捕获的实验与仿真

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Zr based alloys are widely used in hydrogen storage and purification systems. For hydrogen isotope capturing and recycling, it is possible to design the tritium extraction system of the glove box taking into account the operating conditions and technical constraints. Zr _(2) Fe alloy bed was adopted in the 2.5%H _(2) /Ar capturing experiments as well as numerical simulation was also constructed. In this work, the breakthrough curve under conditions of 300 °C@200 sccm for the carrier gas penetration was obtained by establishing a single flowing bed. Then a new numerical model of the bed was established for simulating the penetration process, and a numerical solution to the mass conservation equation of carrier gas passing through the bed was obtained concerning the actual experimental parameters. Calculation results have shown the two-dimensional distribution of H _(2) concentration flowing through a one-dimensional reactor. It can be seen clearly that the H _(2) concentration distributed along the bed axial at different time. This distribution profiles can be used to globally illuminate the concentration variation of hydrogen in the reactor within the whole reaction time scale. Comparing the experimental result of 1.27 days in the breakthrough curve, the results of numerical simulation can predict the curve of about 1.5 days began to breakthrough, although there were certain deviation (~18%). The results can provide a feasible numerical model support for optimizing the tritium capturing bed design.
机译:Zr基合金广泛用于储氢和净化系统。对于氢同位素捕获和再循环,可以设计手套箱的氚提取系统,同时考虑到操作条件和技术限制。在2.5%H _(2)/ AR捕获实验中采用Zr _(2)Fe合金床,也构建了数值模拟。在这项工作中,通过建立单个流动床获得300°C @ 200SCCM条件下的突破曲线。然后建立了床的新数值模型,用于模拟穿透过程,并获得通过床的载气的质量储能方程的数值溶液以及实际的实验参数。计算结果表明,流过一维反应器的H _(2)浓度的二维分布。可以清楚地看出,H _(2)浓度在不同时间沿着床轴向分布。该分布型材可用于全球释放在整个反应时间尺度内反应器中氢的浓度变化。比较突破曲线中1.27天的实验结果,数值模拟的结果可以预测约1.5天开始突破的曲线,尽管有一定的偏差(〜18%)。结果可以提供可行的数值模型支持,用于优化捕获床设计。

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