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首页> 外文期刊>IMA Journal of Numerical Analysis >A posteriori error estimates for mixed finite element and finite volume methods for problems coupled through a boundary with nonmatching grids
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A posteriori error estimates for mixed finite element and finite volume methods for problems coupled through a boundary with nonmatching grids

机译:通过边界不匹配的网格耦合问题的混合有限元和有限体积方法的后验误差估计

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摘要

The primary purpose of this paper is to compare the accuracy and performance of two numerical approaches to solving systems of partial differential equations. These equations are posed on adjoining domains sharing boundary conditions on a common boundary interface in the important case when the meshes used on the two domains are nonmatching across the interface. The first, widely used approach is based on a finite volume method employing ad hoc projections to relate approximations on the two domains across the interface. The second approach uses the mathematically founded mortar mixed finite element method. To quantify the performance, we use a goal-oriented a posteriori error estimate that quantifies various aspects of discretization error to the overall error. While the performance difference may not be a surprise in some cases, we believe that there is a perception in a part of the scientific community concerned with multiphysics systems that if the solution is smooth near the interface, then there is little effect from varying the coupling technique. We find that, on the contrary, the error associated with ad hoc coupling approaches may be large in practical situations. Moreover, we also show that mortar methods can be used with black-box component solvers, thus permitting an efficient and practical implementation also within legacy codes.
机译:本文的主要目的是比较两种数值方法求解偏微分方程组的准确性和性能。当两个域上使用的网格在整个界面上不匹配时,在重要情况下,这些方程式会放在共享边界条件下的边界域上,这些边界域共享边界条件。第一种广泛使用的方法是基于有限体积的方法,该方法使用临时投影来关联界面上两个域上的近似值。第二种方法使用数学上建立的砂浆混合有限元方法。为了量化性能,我们使用了面向目标的后验误差估计,该估计将离散化误差的各个方面量化为整体误差。尽管在某些情况下性能差异可能不足为奇,但我们认为与多物理系统有关的科学界的一部分人认为,如果解决方案在界面附近很光滑,那么改变耦合几乎不会产生任何影响技术。相反,我们发现与ad hoc耦合方法相关的误差在实际情况下可能很大。此外,我们还表明,迫击炮方法可以与黑盒组件求解器一起使用,从而允许在遗留代码中进行有效且实用的实现。

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