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Performance evaluation of a 3-D kinetic model for CANDU reactors in a closed-loop environment

机译:闭环环境下CANDU反应堆3-D动力学模型的性能评估

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摘要

The performance of a newly developed three dimensional (3-D) reactor kinetic model for CANDU reactor is evaluated in this paper. The evaluation is carried out in a closed-loop environment with the help of an existing reactor regulating system (RRS). The 3-D model is obtained based on a modal synthesis method, which represents the neutron flux distribution inside the reactor in both time and space. Throughout this paper, a special attention has been paid to compare the performance of the developed 3-D model with that of traditional coupled point kinetic models. The dynamic behavior of the reactor model in a practical load-following mode has also been examined. The accuracy of the model has been validated against actual plant measurements under both transient and steady-state conditions. Through the analysis and the simulation studies, it has convincingly demonstrated that the developed 3-D model has significant advantages over traditional coupled point kinetic models in terms of the improved accuracy and the higher resolution in modeling the reactor internal dynamics.
机译:本文评估了CANDU反应器新开发的三维(3-D)反应器动力学模型的性能。借助现有的反应堆调节系统(RRS)在闭环环境中进行评估。基于模态合成方法获得了3-D模型,该模型表示反应堆内部的中子通量在时间和空间上的分布。在整个本文中,我们特别注意将开发的3-D模型与传统耦合点动力学模型的性能进行比较。还研究了反应堆模型在实际负荷跟踪模式下的动态行为。该模型的准确性已针对瞬态和稳态条件下的实际工厂测量结果进行了验证。通过分析和仿真研究,令人信服地证明,在对反应堆内部动力学进行建模的过程中,改进的精度和更高的分辨率方面,开发的3-D模型相对于传统的耦合点动力学模型具有明显的优势。

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