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A Reduced Basis Approach for Modeling the Movement of Nuclear Reactor Control Rods

机译:一种简化的核反应堆控制棒运动建模方法

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This work presents a reduced order model (ROM) aimed at simulating nuclear reactor control rods movement and featuring fast-running prediction of reactivity and neutron flux distribution as well. In particular, the reduced basis (RB) method (built upon a high-fidelity finite element (FE) approximation) has been employed. The neutronics has been modeled according to a parametrized stationary version of the multigroup neutron diffusion equation, which can be formulated as a generalized eigenvalue problem. Within the RB framework, the centroidal Voronoi tessellation is employed as a sampling technique due to the possibility of a hierarchical parameter space exploration, without relying on a "classical" a posteriori error estimation, and saving an important amount of computational time in the offline phase. Here, the proposed ROM is capable of correctly predicting, with respect to the high-fidelity FE approximation, both the reactivity and neutron flux shape. In this way, a computational speedup of at least three orders of magnitude is achieved. If a higher precision is required, the number of employed basis functions (BFs) must be increased.
机译:这项工作提出了一种降阶模型(ROM),旨在模拟核反应堆控制棒的运动,并具有反应性和中子通量分布的快速运行预测。特别地,已经采用了缩减基数(RB)方法(基于高保真度有限元(FE)近似)。已根据多组中子扩散方程的参数化固定形式对中子学建模,该方程可公式化为广义特征值问题。在RB框架内,由于可以进行分层参数空间探索,因此不依赖“经典”后验误差估计,并且在离线阶段节省了大量的计算时间,因此采用质心Voronoi镶嵌作为采样技术。 。在此,所提出的ROM能够相对于高保真FE近似正确地预测反应性和中子通量形状。以这种方式,实现了至少三个数量级的计算加速。如果需要更高的精度,则必须增加采用的基函数(BF)的数量。

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