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Numerical model for estimation of corrosion location in nuclear power plant steam generators

机译:核电站蒸汽发生器腐蚀位置估算的数值模型

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Deposition of dissolved impurities and corrosion in steam generators is a significant problem in the operation of nuclear power plants. Impurities and corrosion products usually accumulate in the secondary sides of steam generators (SG) and form deposits on the SG surfaces. A high level of impurity concentration close to the SG heating surface causes the corrosion process to occur with more intensity. The aim of this study is to estimate the most probable locations of impurity concentration and deposition in a SG. Equations representing the convection and diffusion in the liquid phase close to the heated surface (the viscous sub layer) are derived. Based on the mass balance of impurities in the viscous sub layer as the boundary condition, the derived differential equations are solved by the finite volume (upwind) methods. The distribution of impurities, sediment formation rate and the location of the depositions in the viscous sub layer at different heat flux values are studied in steady and unsteady states.
机译:蒸汽发生器中溶解杂质的沉积和腐蚀是核电站运行中的重要问题。杂质和腐蚀产物通常会积聚在蒸汽发生器(SG)的次级侧面,并在SG表面形成沉积物。接近SG加热表面的高杂质浓度会导致腐蚀过程以更高的强度发生。这项研究的目的是估计SG中杂质浓度和沉积的最可能位置。推导了表示在靠近加热表面(粘性子层)的液相中对流和扩散的方程。基于粘性子层中杂质的质量平衡作为边界条件,通过有限体积(迎风)方法求解导出的微分方程。研究了稳态和非稳态下不同热通量下的杂质分布,沉积物形成速率和在粘性子层中的沉积位置。

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