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A new moving-mesh Finite Volume Method for the efficient solution of two-dimensional neutron diffusion equation using gradient variations of reactor power

机译:利用反应堆功率梯度变化有效求解二维中子扩散方程的新的移动网格有限体积法

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A new moving-mesh Finite Volume Method (FVM) for the efficient solution of the two-dimensional neutron diffusion equation is introduced. Many other moving-mesh methods developed to solve the neutron diffusion problems use a relatively large number of sophisticated mathematical equations, and so suffer from a significant complexity of mathematical calculations. In this study, the proposed method is formulated based on simple mathematical algebraic equations that enable an efficient mesh movement and CV deformation for using in practical nuclear reactor applications. Accordingly, a computational framework relying on a new moving-mesh FVM is introduced to efficiently distribute the meshes and deform the CVs in regions with high gradient variations of reactor power. These regions of interest are very important in the neutronic assessment of the nuclear reactors and accordingly, a higher accuracy of the power densities is required to be obtained.The accuracy, execution time and finally visual comparison of the proposed method comprehensively investigated and discussed for three different benchmark problems. The results all indicated a higher accuracy of the proposed method in comparison with the conventional fixed-mesh FVM.
机译:提出了一种有效求解二维中子扩散方程的动网格有限体积法(FVM)。为解决中子扩散问题而开发的许多其他移动网格方法使用了相对大量的复杂数学方程式,因此遭受了数学计算的极大复杂性。在这项研究中,所提出的方法是基于简单的数学代数方程式制定的,该方程式使得有效的网格运动和CV变形能够在实际的核反应堆应用中使用。因此,引入了依赖于新的运动网格FVM的计算框架,以有效地分布网格并使CV在反应堆功率的高梯度变化区域内变形。这些感兴趣的区域在核反应堆的中子评估中非常重要,因此,需要获得更高的功率密度精度。对该方法的精度,执行时间以及最终的目视比较进行了全面的研究和讨论,涉及三个方面。不同的基准问题。结果均表明,与传统的固定网格FVM相比,该方法具有更高的准确性。

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