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首页> 外文期刊>Journal of nuclear science and technology >Optimization of Dissolved Hydrogen Concentration for Control of Primary Coolant Radiolysis in Pressurized Water Reactors
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Optimization of Dissolved Hydrogen Concentration for Control of Primary Coolant Radiolysis in Pressurized Water Reactors

机译:压水反应堆中主要冷却剂辐射分解控制中溶解氢浓度的优化

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Optimization of the dissolved hydrogen concentration in primary coolant of pressurized water reactors has several potential advantages in material integrity and dose reduction. To assess the threshold value of dissolved hydrogen for reducing condition, in-pile loop experiments and radiolysis model calculations were performed. Both experiments and model calculations indicate that the threshold value of dissolved hydrogen for radiolysis is much less than the present control level in pressurized water reactors, and the in-core region is more easily affected by reduced dissolved hydrogen level than the out-of-core region. The measurement of electrochemical corrosion potential of structural material, while varying dissolved hydrogen levels, is desirable in the future to compensate for the uncertainty of the model calculation. For this purpose, electrochemical corrosion potential of stainless steel at the top-of-core, in which the reference electrode could be inserted, was estimated based on the correlation between the experiments and the modeling for the loop.
机译:压水反应堆主冷却剂中溶解氢浓度的优化在材料完整性和减少剂量方面具有多个潜在优势。为了评估还原条件下溶解氢的阈值,进行了堆内回路实验和放射分解模型计算。实验和模型计算均表明,用于辐射分解的溶解氢的阈值远小于压水反应堆中当前的控制水平,并且堆芯内区域比堆芯外更容易受到溶解氢水平降低的影响区域。将来需要在改变溶解氢水平的同时测量结构材料的电化学腐蚀电位,以补偿模型计算的不确定性。为此,根据实验和回路建模之间的相关性,估算了不锈钢芯顶部的电化学腐蚀电势,可以在其中插入参比电极。

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