We introduce a novel computational framework for the multiscale simulation of higher-order continua that allows for the consideration of first-, second- and third- order effects at both micro- and macro-level. In line with classical two-scale approaches, we describe the microstructure via representative volume elements (RVE) that are attached at each integration point of the macroscopic problem. To take account of the extended continuity requirements of independent fields at micro- and macro-level, we discretize both scales via isogeometric analysis (IGA). As a result, we obtain an IGA2-method that is conceptually similar to the well-known FE2-method. We demonstrate the functionality and accuracy of this novel multiscale method by means of a series of multiscale simulations involving different kinds of higher-order continua.
翻译:我们为高阶continua 的多级模拟引入了一个新的计算框架,允许在微观和宏观一级考虑一、二、三级效应。我们根据传统的两级方法,通过在宏观问题的每个整合点附带的代表性体积元素描述微结构。考虑到在微观和宏观一级独立领域的延长连续性要求,我们通过同位素测量分析(IGA)将两个尺度分开。结果,我们获得了一种在概念上与众所周知的FE2-方法相似的IGA2-方法。我们通过一系列涉及不同类型高阶同流的多级模拟,展示了这一新型多级方法的功能和准确性。我们通过一系列涉及不同类型高阶同流的多级模拟,展示了这一新型多级方法的功能和准确性。