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Computationally efficient reduction of modal data from finite element models by nested sets of B-splines

机译:通过B样条的嵌套集以有效方式简化有限元模型中的模态数据

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This paper introduces a novel methodology for the reduction of modal data from complex finite element (FE) models, resulting in a highly accurate and computationally efficient model termed B-SAFE (B-splinebased Semi-Analytical Finite Element model). It is conceptually similar to a method based on nested sets of polynomials proposed earlier by the authors (Poly-SAFE) but provides greater accuracy in the case of complex structures and greater ease of use, limiting the need for user interventions and facilitating automated processing. B-SAFE is constructed via the reduction of a standard displacement-based FE model down to a semi-analytical function built from nested B-splines recursively fitted to modal data, which eliminates the need of high-order polynomials and heavy user-intervention required by Poly-SAFE for the case of complex modal patterns. The present work describes the non-trivial modifications to the original methodology, and shows how fewer and more efficient semi-analytical functions representing field variables such as displacement, strain and stress can be obtained. The new method is exemplified through a numerical case study of a 9.2 m composite wind turbine blade, showing that improved numerical stability and robustness as well as a systematic handling of general geometries can be obtained without user intervention. (C) 2015 Published by Elsevier Ltd.
机译:本文介绍了一种用于从复杂有限元(FE)模型中减少模态数据的新颖方法,从而产生了一种称为B-SAFE(基于B样条的半解析有限元模型)的高精度且计算效率高的模型。从概念上讲,它类似于作者先前提出的基于多项式嵌套集的方法(Poly-SAFE),但是在结构复杂且易于使用的情况下提供了更高的准确性,从而限制了用户干预的需要并促进了自动化处理。 B-SAFE是通过将基于位移的标准有限元模型简化为由嵌套B样条构建的半分析函数而构建的,该嵌套B样条递归拟合到模态数据,从而消除了需要高阶多项式和大量用户干预的需求Poly-SAFE撰写的有关复杂模式模式的案例。本工作描述了对原始方法的重要修改,并显示了如何获得更少且更有效的表示场变量(例如位移,应变和应力)的半分析函数。通过对9.2 m复合材料风力涡轮机叶片进行的数值案例研究来举例说明该新方法,该方法表明无需用户干预即可获得改进的数值稳定性和鲁棒性以及对常规几何形状的系统处理。 (C)2015年由Elsevier Ltd.出版

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