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Reduced Basis Approaches in Time-Dependent Non-Coercive Settings for Modelling the Movement of Nuclear Reactor Control Rods

机译:时变非矫顽环境中的简化基方法,用于对核反应堆控制杆的运动进行建模

摘要

In this work, two approaches, based on the certified Reduced Basis method, have been developed for simulating the movement of nuclear reactor control rods, in time-dependent non-coercive settings featuring a 3D geometrical framework. In particular, in a first approach, a piece-wise affine transformation based on subdomains division has been implemented for modelling the movement of one control rod. In the second approach, a "staircase" strategy has been adopted for simulating the movement of all the three rods featured by the nuclear reactor chosen as case study. The neutron kinetics has been modelled according to the so-called multi-group neutron diffusion, which, in the present case, is a set of ten coupled parametrized parabolic equations (two energy groups for the neutron flux, and eight for the precursors). Both the reduced order models, developed according to the two approaches, provided a very good accuracy compared with high-fidelity results, assumed as "truth" solutions. At the same time, the computational speed-up in the Online phase, with respect to the fine "truth" finite element discretization, achievable by both the proposed approaches is at least of three orders of magnitude, allowing a real-time simulation of the rod movement and control.
机译:在这项工作中,已经开发出了两种方法,它们是基于经过认证的缩减基础法,用于在具有3D几何框架的时间依赖性非矫顽环境中模拟核反应堆控制棒的运动。特别地,在第一种方法中,已经实现了基于子域划分的分段仿射变换,用于对一个控制杆的运动进行建模。在第二种方法中,采用“楼梯”策略来模拟作为案例研究选择的核反应堆所具有的所有三个棒的运动。中子动力学是根据所谓的多组中子扩散建模的,在当前情况下,中子扩散是一组十个耦合的参数化抛物方程(两个能量组用于中子通量,八个能量组用于前体)。根据两种方法开发的两种降阶模型与高保真度结果(被称为“真相”解决方案)相比,提供了非常好的准确性。同时,相对于精细的“真相”有限元离散化,两种提出的方​​法均可实现的在线阶段的计算速度至少为三个数量级,从而可以对模型进行实时仿真。杆的运动和控制。

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