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BDDC preconditioners for Naghdi shell problems and MITC9 elements

机译:用于Naghdi外壳问题和MITC9元素的BDDC预处理器

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摘要

We introduce and study a BDDC (Balancing Domain Decomposition by Constraints) method for the Naghdi shell problem discretized with MITC (Mixed Interpolation of Tensorial Components) elements. Compared with the Kirchhoff model, the Naghdi model uses both displacement and rotation as variables, and therefore is more accurate but also more complicated at the numerical level. The severe difficulties of finite element shell analysis are also reflected in the condition number of the problem, which quickly diverges as the thickness of the shell and/or the finite element mesh size tend to zero. The proposed BDDC preconditioner is based on a proper selection of primal continuity constraints, the implicit elimination of the interior degrees of freedom in each subdomain, and the iterative solution of the resulting shell Schur complement by a preconditioned conjugate gradient method. The preconditioner is built from the solutions of local shell problems on each subdomain with clamping conditions at the primal degrees of freedom and on the solution of a coarse shell problem for the primal degrees of freedom. Three choices of primal constraints, hence coarse spaces, are considered, yielding three BDDC preconditioner of increasing strength and cost. Several numerical tests are performed for cylindrical, hyperbolic and elliptic shells. The results show that the proposed BDDC preconditioners are scalable in the number of subdomains, quasi-optimal in the ratio subdomain/element sizes, robust with respect to discontinuities of the shell material properties, and almost robust with respect to the shell thickness.
机译:我们引入并研究了用MITC(张量分量的混合插值)元素离散化的Naghdi壳问题的BDDC(受约束的平衡域分解)方法。与Kirchhoff模型相比,Naghdi模型将位移和旋转都用作变量,因此在数字级别更精确,但也更复杂。问题的条件数也反映了有限元壳分析的严重困难,随着壳的厚度和/或有限元网格尺寸趋于零,问题的条件数迅速发散。提出的BDDC预处理器是基于对原始连续性约束的正确选择,每个子域中内部自由度的隐式消除,以及通过预处理的共轭梯度方法对所得壳Schur补码的迭代求解。预处理器是根据每个子域上具有原始自由度的夹紧条件的局部壳问题的解决方案以及基于原始自由度的粗糙壳问题的解决方案构建的。考虑了三种基本约束的选择,因此考虑了粗略的空间,从而产生了三种强度和成本增加的BDDC预处理器。对圆柱壳,双曲壳和椭圆壳进行了一些数值测试。结果表明,提出的BDDC预处理器在子域的数量上是可扩展的,在子域/元素大小的比率上是准最优的,对于外壳材料特性的不连续性是可靠的,并且对于外壳厚度几乎是鲁棒的。

著录项

  • 来源
    《Computers & Structures》 |2012年第7期|p.28-41|共14页
  • 作者单位

    Dipartimento di Matematica, Universita di Miiano, Via Saldini 50, 20133 Milano, Italy;

    Dipartimento di Scienze e Tecnologie Avanzate, Universita del Piemome Orientate, Viale T.Michel 11,1-15100 Alessandria, Italy;

    Dipartimento di Matematica, Universita di Pavia, Via Ferrata 1, 27100 Pavia, Italy;

    Dipartimento di Matematica, Universita di Miiano, Via Saldini 50, 20133 Milano, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    shells; domain decomposition; MITC finite elements; BDDC preconditioning;

    机译:贝壳域分解;MITC有限元;BDDC预处理;

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