大理大学学报 ›› 2025, Vol. 10 ›› Issue (6): 1-5.

• 数学与计算机科学 •    下一篇

基于矩阵图集和代数插值的V型代数三重网格法研究

  

  1. 滁州城市职业学院教育学院,安徽滁州 239000
  • 出版日期:2025-06-15 发布日期:2025-06-24
  • 作者简介:王从徐,副教授,主要从事数学理论、应用数学研究。
  • 基金资助:
    滁州城市职业学院校级自然科学研究项目(2024zkzd02)

Research on V-Type Algebraic Triple Grid Method Based on Matrix Atlas and Algebraic Interpolation

  1. Department of Education, Chuzhou City Vocation College, Chouzhou, Anhui 239000, China
  • Online:2025-06-15 Published:2025-06-24

摘要: 为解决多重网格法V循环的最佳选取问题,提高光滑次数下的收敛精度和收敛速度,基于矩阵图集的粗化算法和代数插值算子,提出一种求解椭圆方程的V型代数三重网格法。通过数值分析,对比V循环算法与V型代数三重网格法的计算性能。结果表明,V循环算法的迭代次数与求解规模呈正相关。当循环迭代的次数为4,网格剖分步长为1/224时,V型代数三重网格法的能量误差仅为4.781 8×10-8,CPU耗时为284.294 s。与V循环算法相比,新算法计算量少,计算精度高,计算时间更短。

关键词: 粗化算法, 插值算子, 代数三重网格法, 椭圆方程

Abstract: In order to realize the optimal selection of the V-cycle of the multigrid method and improve the convergence accuracy and speed under the smooth degree, a V-type algebraic triple grid method for solving elliptic equations is proposed based on the coarsening
algorithm of matrix atlas and algebraic interpolation operator. Through numerical analysis, the computational performance of V-cycle
algorithm and V-type algebraic triple grid method is compared. The results show that the number of iterations of the V-cycle algorithm
is positively correlated with the solution scale. When the number of iterations is 4 and the mesh generation step size is 1/224, the energy error of the V-type algebraic triple grid method is only 4.781 8 × 10-8, and the CPU time consumption is 284.294 s. Compared with the V-cycle algorithm, the new algorithm has less computation, higher calculation accuracy and shorter calculation time.

Key words: coarsening algorithm, interpolation operator, algebraic triple grid method, elliptic equation

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