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On the estimation of the unknown reactivity coefficients in a CANDU reactor

机译:关于CANDU反应器中未知反应系数的估计

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A space-time kinetics based inverse architecture method is suggested to analyze the reactivity variations associated with power excursions in a generic CANDU reactor. It is intended to provide diagnosis tools to gain enhanced control thereby ensuring safe operation of the plant. A methodology for analyzing the data available from the in core flux detectors and extracting the unknown reactivity coefficients is presented. The proposed system uses a reference model in conjunction with an optimal estimator. The reference model is composed of a state space representation of the space-time dynamics of neutron flux in the core, based on modal expansion approximation, and a time domain optimal estimator filter. We investigated three different estimation techniques based on recursive prediction error method (RPEM), dual extended Kalman filter (DEKF), and joint extended Kalman filter (JEKF). We compared their applicability to the estimation of coolant-void dynamic reactivity in loss-of-coolant accident in a CANDU reactor. The state equations also include the characteristics of the detector responses. The thermal hydraulic models were not included in the calculations. Two different types of detectors are considered in this analysis, the over prompt responsive Platinum detector of the reactor shutdown systems, and the under delayed responsive Vanadium detector of the flux mapping system.
机译:提出了一种基于时空动力学的逆结构方法,以分析与通用CANDU反应堆中的功率偏移相关的反应性变化。旨在提供诊断工具以获得增强的控制,从而确保工厂的安全运行。提出了一种分析岩心通量检测器中可用数据并提取未知反应系数的方法。拟议的系统结合最佳估计量使用参考模型。参考模型由基于模态展开逼近的堆芯中子通量的时空动力学状态空间表示和时域最优估计滤波器组成。我们研究了基于递归预测误差方法(RPEM),双重扩展卡尔曼滤波器(DEKF)和联合扩展卡尔曼滤波器(JEKF)的三种不同的估计技术。我们将它们的适用性与CANDU反应堆中因冷却剂流失事故而产生的无冷却剂动态反应性进行了估算。状态方程还包括检测器响应的特性。计算中不包括热工水力模型。在此分析中考虑了两种不同类型的检测器,即反应堆关闭系统的过快响应式铂金检测器和通量映射系统的延迟不足的响应式钒检测器。

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