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A comparison of the meshless RBF collocation method with finite element and boundary element methods in neutron diffusion calculations

机译:中子扩散计算中无网格RBF配置方法与有限元和边界元方法的比较

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The multigroup neutron diffusion equation is solved numerically by the meshless radial basis function collocation and mesh-based finite and boundary element methods. For the collocation method, multiquadrics, inverse multiquadrics and Gaussian basis functions are utilized, whereas linear shape functions are the choice for finite and boundary element methods. External and fission source problems are studied. In the context of external source case, constant, trigonometric, and linear sources are considered. The collocation method converges exponentially which is faster than the algebraic rates of finite and boundary element methods for both problems, and it was found that by adjusting the value of the shape parameter, very high accuracies can be achieved even with large fill distances. In the fission source case, multiquadrics is found to be superior to finite and boundary elements for the determination of multiplication factor, while boundary elements gave the best result for group fluxes. A comparison of CPU times shows that, finite element method has outperformed radial basis function collocation and boundary elements. When the stability is considered, finite and boundary element methods have the advantage of being more stable than the collocation technique.
机译:通过无网格径向基函数搭配以及基于网格的有限元和边界元方法,数值求解了多组中子扩散方程。对于搭配方法,使用了多二次方,逆多二次方和高斯基函数,而线性形状函数是有限元和边界元方法的选择。研究了外部和裂变源问题。在外部源情况下,应考虑恒定源,三角源和线性源。对于这两个问题,配置方法都以指数形式收敛,这快于有限元和边界元方法的代数速率,并且发现通过调整形状参数的值,即使填充距离较大,也可以实现很高的精度。在裂变源情况下,在确定乘积因子时,发现多二次方优于有限元和边界元,而对于组通量,边界元给出了最佳结果。 CPU时间的比较表明,有限元方法的性能优于径向基函数的搭配和边界元素。考虑稳定性时,有限元法和边界元法具有比配置技术更稳定的优势。

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