论文标题
多种多尺度有限元方法的非侵入性实施
Non-intrusive implementation of a wide variety of Multiscale Finite Element Methods
论文作者
论文摘要
多尺度有限元方法(MSFEM)现在是专门针对多尺度问题的有限元类型方法。他们首先计算局部,振荡,问题依赖性基础函数,该函数生成合适的离散空间,然后在该空间上执行问题的盖尔金近似。我们在这里研究如何以非侵入性的方式实施这些方法,以促进它们在工业法规或非学术环境中的传播。我们开发了一个抽象框架,该框架涵盖了线性二阶偏微分方程的各种MSFEM。非侵入性的MSFEM方法是在该框架的全部一般性中开发的,这可能对转向软件开发和改善MSFEM的理论理解和分析有益。
Multiscale Finite Element Methods (MsFEMs) are now well-established finite element type approaches dedicated to multiscale problems. They first compute local, oscillatory, problem-dependent basis functions that generate a suitable discretization space, and next perform a Galerkin approximation of the problem on that space. We investigate here how these approaches can be implemented in a non-intrusive way, in order to facilitate their dissemination within industrial codes or non-academic environments. We develop an abstract framework that covers a wide variety of MsFEMs for linear second-order partial differential equations. Non-intrusive MsFEM approaches are developed within the full generality of this framework, which may moreover be beneficial to steering software development and improving the theoretical understanding and analysis of MsFEMs.