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首页> 外文期刊>Metallurgical and Materials Transactions, E. Materials for Energy Systems >OSCAR-Na: A New Code for Simulating Corrosion Product Contamination in SFR
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OSCAR-Na: A New Code for Simulating Corrosion Product Contamination in SFR

机译:OSCAR-Na:模拟SFR中腐蚀产物污染的新规范

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摘要

A code named OSCAR-Na has been developed to calculate the mass transfer of corrosion products in the primary circuit of sodium fast reactors (SFR). It is based on a solution/precipitation model, including diffusion in the steel (enhanced under irradiation), diffusion through the sodium boundary layer, equilibrium concentration of each element, and velocity of the interface (bulk corrosion or deposition). The code uses a numerical method for solving the diffusion equation in the steel and the complete mass balance in sodium for all elements. Corrosion and deposition rates are mainly determined by the iron equilibrium concentration in sodium and its oxygen-enhanced dissolution rate. All parameters of the model have been assessed from a literature review, but iron solubility had to be adjusted. A simplified primary system description of PHENIX French SFR was able to assess the correct amounts and profiles of contamination on heat exchanger surfaces for the main radionuclides.
机译:已经开发了一个名为OSCAR-Na的代码,用于计算钠快堆(SFR)一次回路中腐蚀产物的传质。它基于溶液/沉淀模型,包括在钢中的扩散(在辐照下增强),在钠边界层中的扩散,每种元素的平衡浓度以及界面的速度(大体积腐蚀或沉积)。该规范使用一种数值方法来求解钢中的扩散方程,并求解所有元素中钠的全部质量平衡。腐蚀和沉积速率主要取决于钠中铁的平衡浓度及其氧的溶解速率。该模型的所有参数均已通过文献综述进行了评估,但必须调整铁的溶解度。 PHENIX French SFR的简化的主要系统描述能够评估热交换器表面上主要放射性核素的正确污染量和分布。

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