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A Computational Model of the Mark-IV Electrorefiner: Phase I-Fuel Basket/Salt Interface

机译:Mark-IV电精炼机的计算模型:I相-燃料篮/盐界面

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Spent driver fuel from the Experimental Breeder Reactor-II is currently being treated in the Mark-TV electrorefiner in the Fuel Conditioning Facility at Idaho National Laboratory. The modeling approach to be presented here has been developed to help understand the effect of different parameters on the dynamics of this system. The first phase of this new modeling approach focuses on the fuel basket/salt interface involving the transport of various species found in the driver fuels (e.g., uranium and zirconium). This approach minimizes the guessed parameters to only one, the exchange current density (i_0). U~(3+) and Zr~(4+) were the only species used for the current study. The result reveals that most of the total cell current is used for the oxidation of uranium, with little being used by zirconium. The dimensionless approach shows that the total potential is a strong function of i_0 and a weak function of wt % of uranium in the salt system for initiation processes.
机译:来自爱德华州国家实验室燃料调节设施的Mark-TV电精炼机目前正在处理实验型增殖反应堆II消耗的驱动燃料。已经开发了这里要介绍的建模方法,以帮助理解不同参数对系统动力学的影响。这种新的建模方法的第一阶段着重于燃料篮/盐界面,涉及运输在驱动燃料中发现的各种物质(例如铀和锆)。这种方法将猜测的参数减至仅一个,即交换电流密度(i_0)。 U〜(3+)和Zr〜(4+)是当前研究中使用的唯一物种。结果表明,电池总电流的大部分用于铀的氧化,而锆则很少。无量纲方法显示,在引发过程中,盐体系中的总电势是i_0的强函数和铀的wt%的弱函数。

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