Comparison of the deflated preconditioned conjugate gradient method and algebraic multigrid for composite materials

被引:0
|
作者
T. B. Jönsthövel
M. B. van Gijzen
S. MacLachlan
C. Vuik
A. Scarpas
机构
[1] Delft University of Technology,Department of Structural Mechanics, Faculty of Civil Engineering
[2] Delft University of Technology,Department of Applied Mathematical Analysis, Faculty of Electrical Engineering, Mathematics and Computer Science
[3] Tufts University,Department of Mathematics
来源
Computational Mechanics | 2012年 / 50卷
关键词
Deflation; Algebraic multigrid; Preconditioners; Conjugate gradients; Rigid body modes; CT scan; Structural mechanics; 65F10; 65F08; 65Z05;
D O I
暂无
中图分类号
学科分类号
摘要
Many applications in computational science and engineering concern composite materials, which are characterized by large discontinuities in the material properties. Such applications require fine-scale finite-element meshes, which lead to large linear systems that are challenging to solve with current direct and iterative solutions algorithms. In this paper, we consider the simulation of asphalt concrete, which is a mixture of components with large differences in material stiffness. The discontinuities in material stiffness give rise to many small eigenvalues that negatively affect the convergence of iterative solution algorithms such as the preconditioned conjugate gradient (PCG) method. This paper considers the deflated preconditioned conjugate gradient (DPCG) method in which the rigid body modes of sets of elements with homogeneous material properties are used as deflation vectors. As preconditioner we consider several variants of the algebraic multigrid smoothed aggregation method. We evaluate the performance of the DPCG method on a parallel computer using up to 64 processors. Our test problems are derived from real asphalt core samples, obtained using CT scans. We show that the DPCG method is an efficient and robust technique for solving these challenging linear systems.
引用
收藏
页码:321 / 333
页数:12
相关论文
共 50 条
  • [21] A parallel multigrid preconditioned conjugate gradient algorithm for groundwater flow simulations
    Ashby, SF
    Falgout, RD
    NUCLEAR SCIENCE AND ENGINEERING, 1996, 124 (01) : 145 - 159
  • [22] Parallel multigrid preconditioned conjugate gradient algorithm for groundwater flow simulations
    Lawrence Livermore Natl Lab, Livermore, United States
    Nucl Sci Eng, 1 (145-159):
  • [23] The deflated conjugate gradient method: Convergence, perturbation and accuracy
    Kahl, K.
    Rittich, H.
    LINEAR ALGEBRA AND ITS APPLICATIONS, 2017, 515 : 111 - 129
  • [24] USCT imaging acceleration using preconditioned conjugate gradient and multigrid methods
    Wang, H.
    Gemmeke, H.
    Hopp, T.
    Hesser, J.
    STRAHLENTHERAPIE UND ONKOLOGIE, 2018, 194 : S153 - S154
  • [25] Deflated preconditioned conjugate gradient solvers for the pressure-Poisson equation: Extensions and improvements
    Loehner, Rainald
    Mut, Fernando
    Cebral, Juan Raul
    Aubry, Romain
    Houzeaux, Guillaume
    INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN ENGINEERING, 2011, 87 (1-5) : 2 - 14
  • [26] Multigrid preconditioned conjugate-gradient method for large-scale wave-front reconstruction
    Gilles, L
    Vogel, CR
    Ellerbroek, BL
    JOURNAL OF THE OPTICAL SOCIETY OF AMERICA A-OPTICS IMAGE SCIENCE AND VISION, 2002, 19 (09): : 1817 - 1822
  • [27] Deflated preconditioned Conjugate Gradient methods for noise filtering of low-field MR images
    Shan, Xiujie
    van Gijzen, Martin B.
    JOURNAL OF COMPUTATIONAL AND APPLIED MATHEMATICS, 2022, 400
  • [29] Efficient Parallelization of the Preconditioned Conjugate Gradient Method
    Accary, Gilbert
    Bessonov, Oleg
    Fougere, Dominique
    Gavrilov, Konstantin
    Meradji, Sofiane
    Morvan, Dominique
    PARALLEL COMPUTING TECHNOLOGIES, PROCEEDINGS, 2009, 5698 : 60 - +
  • [30] Superresolution using preconditioned conjugate gradient method
    Yang, CJ
    Duraiswami, R
    Davis, L
    SECOND INTERNATION CONFERENCE ON IMAGE AND GRAPHICS, PTS 1 AND 2, 2002, 4875 : 591 - 598