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DEVELOPMENT OF GRID DEPRESSION MODEL FOR GalaxyCosmo-S

机译:GalaxyCosmo-S网格压降模型的开发

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An efficient grid depression reconstruction model on axial assembly power distribution was developed for MHI nuclear design code system GalaxyCosmo-S. The objective of this paper is to present the background, methodology and its application of the new model in GalaxyCosmo-S. In order to consider the grid depression effect to the homogeneous axial power distribution obtained from 3D nodal core calculation, the new model employs the concept of the pin-power reconstruction model widely used in modern core design codes. In the new model, axial heterogeneous assembly power distribution is calculated by synthesizing the grid form function to the axial homogeneous power distribution by nodal calculation. The form function is pre-produced by fitting the local grid depression data processed from the measured axial thimble reaction rate in the grid position. By incorporating the measured data, the form function can reflect the precise grid depression information. According to the present study, it was shown that the form function has a burnup dependency for its depth, and it is prepared for each fuel type and axial grid position. In order to confirm the applicability of the present method to the existing PWRs, the predicted axial power distribution by GalaxyCosmo-S was compared with the measured data by the movable detector (M/D). As a result, the good agreements were confirmed without any specific trends for burnup condition. In addition, the difference of axial power distribution between predicted and measured data was statistically analyzed for multiple plants, cycles and burnup conditions. From the results, it is confirmed that the systematic over- or under-estimations of the power distribution observed in the grid homogenized model are reduced by the grid depression model. So this model is suitable for the 3D power distribution analysis and F_Q uncertainty evaluation.
机译:针对三菱重工(MHI)核设计代码系统GalaxyCosmo-S,开发了一种有效的基于轴向装配功率分布的网格凹陷重构模型。本文的目的是介绍新模型在GalaxyCosmo-S中的背景,方法及其应用。为了考虑网格凹陷对从3D节点核心计算中获得的均匀轴向功率分布的影响,新模型采用了在现代核心设计规范中广泛使用的引脚功率重建模型的概念。在新模型中,通过节点计算将网格形式函数合成为轴向均质功率分布,从而计算出轴向异质组件功率分布。通过将根据测量的轴向顶针反应速率处理的局部网格凹陷数据拟合到网格位置中,可以预先生成形状函数。通过合并测量数据,形状函数可以反映出精确的网格凹陷信息。根据目前的研究,已经表明,形式函数的深度具有燃耗依赖性,并且针对每种燃料类型和轴向网格位置进行了准备。为了确认本方法对现有压水堆的适用性,将GalaxyCosmo-S预测的轴向功率分布与可移动探测器(M / D)的测量数据进行了比较。结果,确认了良好的协议,没有燃耗条件的任何特定趋势。此外,针对多个电厂,循环和燃耗条件,对统计数据与预测数据之间的轴向功率分布差异进行了统计分析。从结果可以确认,通过电网凹陷模型可以减少在电网均质化模型中观察到的功率分布的系统性高估或低估。因此,该模型适用于3D功率分布分析和F_Q不确定性评估。

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