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3D hierarchical interface-enriched finite element method: Implementation and applications

机译:3D分层接口丰富的有限元方法:实现与应用

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摘要

A hierarchical interface-enriched finite element method (HIFEM) is proposed for the mesh-independent treatment of 3D problems with intricate morphologies. The HIFEM implements a recursive algorithm for creating enrichment functions that capture gradient discontinuities in nonconforming finite elements cut by arbitrary number and configuration of materials interfaces. The method enables the mesh-independent simulation of multi-phase problems with materials interfaces that are in close proximity or contact while providing a straightforward general approach for evaluating the enrichments. In this manuscript, we present a detailed discussion on the implementation issues and required computational geometry considerations associated with the HIFEM approximation of thermal and mechanical responses of 3D problems. A convergence study is provided to investigate the accuracy and convergence rate of the HIFEM and compare them with standard FEM benchmark solutions. We will also demonstrate the application of this mesh-independent method for simulating the thermal and mechanical responses of two composite materials systems with complex microstructures. (C) 2015 Elsevier Inc. All rights reserved.
机译:提出了一种层次丰富的接口有限元方法(HIFEM),用于复杂形状的3D问题的网格无关处理。 HIFEM实现了一种递归算法,用于创建富集函数,该函数可以捕获由任意数量和材料界面配置切割的不合格有限元中的梯度不连续性。该方法可以通过紧密接近或接触的材料界面实现多相问题的独立于网格的模拟,同时为评估富集提供了直接的通用方法。在本手稿中,我们将详细讨论与3D问题的热和机械响应的HIFEM近似相关的实现问题和所需的计算几何因素。提供收敛研究以调查HIFEM的准确性和收敛速度,并将其与标准FEM基准解决方案进行比较。我们还将演示这种独立于网格的方法在模拟具有复杂微结构的两种复合材料系统的热和机械响应中的应用。 (C)2015 Elsevier Inc.保留所有权利。

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