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Development of a method for measuring the moderator temperature coefficient by noise analysis and its experimental verification in Ringhals-2

机译:通过噪声分析测量慢化剂温度系数的方法的开发及其在Ringhals-2中的实验验证

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This paper deals with the estimation of the moderator temperature coefficient of reactivity (MTC) by noise analysis. The current noise analysis-based MTC measurement, relying on the cross correlation between the neutron noise measured by a single in-core neutron detector and the local temperature noise given by a single core-exit thermocouple located at the top of the same fuel assembly, or of a neighboring fuel assembly, is not accurate. The MTC is systematically underestimated by a factor of 2 to 5 compared to its design-predicted value. A theoretical study shows that, in case of nonhomogeneous moderator temperature noise, the core-averaged moderator temperature noise should be used for the MTC estimation. The new estimation method can reach up to 3% accuracy as compared with the results of core calculations for the Swedish Ringhals-2 pressurized water reactor (PWR). We show via noise measurements performed at the Ringhals-2 PWR that the moderator temperature noise is actually radially strongly heterogeneous and loosely coupled. The new MTC noise estimator is demonstrated to provide an accurate MTC evaluation, with the core-averaged moderator temperature noise estimated via the use of many radial in-core gamma-thermometers. More important, different forms of weighting functions are suggested to calculate the core-averaged moderator temperature noise. This new MTC noise estimator, which is nonintrusive and free of calibration, can therefore be applied to monitor the MTC throughout the cycle.
机译:本文涉及通过噪声分析估计慢化反应温度系数(MTC)。当前基于噪声分析的MTC测量,取决于单个堆芯中子探测器测量的中子噪声与位于同一燃料组件顶部的单个堆芯出口热电偶给出的局部温度噪声之间的互相关性,或邻近的燃料组件不准确。与设计预测值相比,MTC被系统低估了2到5倍。理论研究表明,在非均匀主持人温度噪声的情况下,应使用核心平均主持人温度噪声进行MTC估计。与瑞典Ringhals-2压水堆(PWR)的核心计算结果相比,新的估算方法可以达到3%的精度。我们通过在Ringhals-2 PWR上进行的噪声测量显示,减速器温度噪声实际上在径向上很不均匀,并且松散耦合。新的MTC噪声估算器被证明可以提供准确的MTC评估,并且通过使用许多径向堆芯内伽马温度计来估算堆芯平均减速器温度噪声。更重要的是,建议使用不同形式的加权函数来计算核心平均减速器温度噪声。这种新型的非干扰性且无需校准的MTC噪声估计器因此可用于在整个周期内监视MTC。

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