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Adaptive Isogeometric analysis for plate vibrations: An efficient approach of local refinement based on hierarchical a posteriori error estimation

机译:板振动的自适应等几何分析:一种基于分层后验误差估计的有效局部细化方法

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This paper presents a novel methodology of local adaptivity for the frequency-domain analysis of the vibrations of Reissner-Mindlin plates. The adaptive discretization is based on the recently developed Geometry Independent Field approximaTion (GIFT) framework, which may be seen as a generalization of the Iso-Geometric Analysis (IGA). Within the GIFT framework, we describe the geometry of the structure exactly with NURBS (Non-Uniform Rational B-Splines), whilst independently employing Polynomial splines over Hierarchical T-meshes (PHT)-splines to represent the solution field. The proposed strategy of local adaptivity, wherein a posteriori error estimators are computed based on inexpensive hierarchical h-refinement, aims to control the discretization error within a frequency band. The approach sweeps from lower to higher frequencies, refining the mesh appropriately so that each of the free vibration mode within the targeted frequency band is sufficiently resolved. Through several numerical examples, we show that the GIFT framework is a powerful and versatile tool to perform local adaptivity in structural dynamics. We also show that the proposed adaptive local h-refinement scheme allows us to achieve significantly faster convergence rates than a uniform h-refinement. (C) 2018 Elsevier B.V. All rights reserved.
机译:本文提出了一种用于Reissner-Mindlin板振动的频域分析的局部适应性新方法。自适应离散化基于最近开发的几何独立场近似(GIFT)框架,可以将其视为等几何分析(IGA)的概括。在GIFT框架内,我们使用NURBS(非均匀有理B样条)精确描述结构的几何形状,同时在层次T网格(PHT)样条上独立地采用多项式样条来表示求解场。所提出的局部适应性策略旨在控制频带内的离散化误差,在该策略中,后验误差估计器是基于廉价的分层h精炼来计算的。该方法从较低的频率扫描到较高的频率,适当地细化了网格,以便目标频带内的每个自由振动模式得到充分解决。通过几个数值示例,我们表明GIFT框架是在结构动力学中执行局部适应性的强大而多功能的工具。我们还表明,提出的自适应局部h细化方案使我们可以获得比均匀h细化更快的收敛速度。 (C)2018 Elsevier B.V.保留所有权利。

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