论文标题

用于分析局部非线性现象的完全非侵入性混合IgA/fem方案

A fully non-invasive hybrid IGA/FEM scheme for the analysis of localized non-linear phenomena

论文作者

Lapina, Evgeniia, Oumaziz, Paul, Bouclier, Robin, Passieux, Jean-Charles

论文摘要

这项工作承诺结合用于结构的全球/局部仿真的等几何分析(IGA)(IGA)和标准有限元方法(FEM)的兴趣。这个想法是采用混合全球IGA/本地FEM建模,从而受益:(i)IGA的出色几何描述和每度自由学的准确性,用于捕获全球,定期响应以及(ii)FEM计算本地,强烈的,不线性或偶尔行为的能力。为了最大程度地减少实施工作,我们开发了一种完全没有侵入性的耦合方案,因为最初的全球样条模型永远不会被修改,并且可以使用常规的FE套件来执行耦合操作员的构建。关键要素是基于b {é} ZIER提取的FEM-iga桥,以将初始的全局样条接口转换为可以在其上构建局部FE网格的Fe桥。这允许求助于经典的FE跟踪操作员来实现耦合。它产生了一种策略,该策略提供了将同几何代码与适合于复杂本地行为建模的任何稳健的FE代码相结合的机会。该方法还可以很容易地扩展,以防用户只能处置FE代码。这是数值插图所考虑的情况。更确切地说,我们仅利用FE工业软件代码ASTER来高效,准确地执行遭受裂缝,接触,触点,摩擦和分层的结构的混合全球-IGA/本地FEM模拟。

This work undertakes to combine the interests of IsoGeometric Analysis (IGA) and standard Finite Element Methods (FEM) for the global/local simulation of structures. The idea is to adopt a hybrid global-IGA/local-FEM modeling, thereby benefiting from: (i) the superior geometric description and per-Degree-Of-Freedom accuracy of IGA for capturing global, regular responses, and (ii) the ability of FEM to compute local, strongly non-linear or even singular behaviors. For the sake of minimizing the implementation effort, we develop a coupling scheme that is fully non-invasive in the sense that the initial global spline model to be enriched is never modified and the construction of the coupling operators can be performed using conventional FE packages. The key ingredient is to express the FEM-to-IGA bridge, based on B{é}zier extraction, to transform the initial global spline interface into a FE one on which the local FE mesh can be constructed. This allows to resort to classic FE trace operators to implement the coupling. It results in a strategy that offers the opportunity to simply couple an isogeometric code with any robust FE code suitable for the modelling of complex local behaviors. The method also easily extends in case the users only have at their disposal FE codes. This is the situation that is considered for the numerical illustrations. More precisely, we only make use of the FE industrial software Code Aster to perform efficiently and accurately the hybrid global-IGA/local-FEM simulation of structures subjected locally to cracks, contact, friction and delamination.

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