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Higher order dual Lagrange multiplier spaces for mortar finite element discretizations

机译:砂浆有限元离散化的高阶对偶拉格朗日乘数空间

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Domain decomposition techniques provide a powerful tool for the numerical approximation of partial differential equations. Here, we consider mortar techniques for quadratic finite elements. In particular, we focus on dual Lagrange multiplier spaces. These non-standard Lagrange multiplier spaces yield optimal discretization schemes and a locally supported basis for the associated constrained mortar spaces. As a result, standard efficient iterative solvers as multigrid methods can be easily adapted to the nonconforming situation. We construct locally supported and continuous dual basis functions for quadratic finite elements starting from the discontinuous quadratic dual basis functions for the Lagrange multiplier space. In particular, we compare different dual Lagrange multiplier spaces and piecewise linear and quadratic finite elements. The optimality of the associated mortar method is shown. Numerical results illustrate the performance of our approach.
机译:域分解技术为偏微分方程的数值逼近提供了强大的工具。在这里,我们考虑用于二次有限元的砂浆技术。特别地,我们专注于对偶拉格朗日乘数空间。这些非标准的拉格朗日乘数空间可产生最佳离散化方案,并为相关的约束砂浆空间提供本地支持的基础。结果,作为多网格方法的标准有效迭代求解器可以很容易地适应不合格情况。我们从拉格朗日乘子空间的不连续二次对偶函数开始,为二次有限元构造局部支持和连续对偶基础函数。特别是,我们比较了不同的对偶拉格朗日乘数空间以及分段线性和二次有限元。显示了相关砂浆方法的最优性。数值结果说明了我们方法的性能。

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  • 来源
    《Calcolo》 |2002年第4期|219-237|共19页
  • 作者单位

    Institute of Applied Analysis and Numerical Simulation University of Stuttgart Pfaffenwaldring 57 70569 Stuttgart Germany¶ e-mail: {lamichhanewohlmuth}@mathematik.uni-stuttgart.de;

    Institute of Applied Analysis and Numerical Simulation University of Stuttgart Pfaffenwaldring 57 70569 Stuttgart Germany¶ e-mail: {lamichhanewohlmuth}@mathematik.uni-stuttgart.de;

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