首页> 外文期刊>Computers & Structures >A simple error indicator for meshfree methods based on natural neighbors
【24h】

A simple error indicator for meshfree methods based on natural neighbors

机译:基于自然邻居的无网格方法的简单错误指示符

获取原文
获取原文并翻译 | 示例

摘要

The main aim of this paper is the development of a refinement procedure able to operate in the context of the constrained natural element method (C-NEM). The C-NEM was proposed by the authors in a former work [Yvonnet J, Ryckelynck D, Lorong P, Chinesta F. A new extension of the natural element method for non-convex and discontinuous domains: the constrained natural element method (C-NEM). Int J Numer Methods Eng 2004;60:1451-1474] and its main meshless features, that allow to describe large domain changes as well as to handle fixed or moving discontinuities, were analyzed in [Yvonnet J, Chinesta F, Lorong P, Rynckelynck D. The constrained natural element method (C-NEM) for treating thermal models involving moving interfaces. Int J Thermal Sci 2005;44:559-569; Yvonnet J, Lorong P, Ryckelynck D, Chinesta F. Simulating dynamic thermo-elastoplasticity in large transformations with adaptive refinement in the natural element method: application to shear banding. Int J Forming Process 2005;8:347-363]. Sometimes, in order to improve the interpolation accuracy for describing boundary layers or an anisotropic behavior, new nodes must be added, removed or repositioned. The interpolation in the vast majority of meshless techniques is free of mesh quality requirement. Thus, introduction, elimination or repositioning of nodes is a trivial task, because no geometrical restrictions exist. In this way, nodes can be added without geometrical checks in the regions where the solution must be improved (identified by using an appropriate error indicator). For this purpose, in this paper an a posteriori error indicator will be proposed and tested in some linear elastostatic problems benchmarks involving different levels of difficulty (stress concentration, solution singularities,...) all of them with a known exact solution. The computational implementation of this error indicator is very simple, and when it is used in tandem with an efficient refinement procedure, which makes use of the meshless features of the C-NEM, provides an accurate adaptation procedure, specially appropriate in the C-NEM framework.
机译:本文的主要目的是开发一种能够在约束自然元素方法(C-NEM)的背景下运行的优化程序。 C-NEM由作者在以前的工作中提出[Yvonnet J,Ryckelynck D,Lorong P,ChinestaF。针对非凸和不连续域的自然元素方法的新扩展:受约束的自然元素方法(C- NEM)。 [Yvonnet J,Chinesta F,Lorong P,Rynckelynck]分析了Int J Numer Methods Eng 2004; 60:1451-1474]及其主要的无网格特征,这些特征可以描述较大的域变化以及处理固定或移动的不连续性。 D.用于处理涉及移动界面的热模型的受约束自然元素方法(C-NEM)。 Int J Thermal Sci 2005; 44:559-569; Yvonnet J,Lorong P,Ryckelynck D,ChinestaF。在自然变换方法中通过自适应细化模拟大变形中的动态热弹塑性:应用于剪切带。 Int J Forming Process 2005; 8:347-363]。有时,为了提高用于描述边界层或各向异性行为的插值精度,必须添加,删除或重新放置新节点。绝大多数无网格技术中的插值均没有网格质量要求。因此,引入,消除或重新放置节点是一项琐碎的任务,因为不存在几何约束。这样,可以在必须改进解决方案的区域中添加节点而无需进行几何检查(通过使用适当的错误指示符进行标识)。为此,本文将提出后验误差指标,并在一些涉及不同难度水平(应力集中,溶液奇点等)的线性弹性静力学问题基准中进行测试,所有这些都具有已知的精确解。此错误指示符的计算实现非常简单,并且与有效的优化程序配合使用时,利用C-NEM的无网格功能,可以提供准确的自适应过程,特别适用于C-NEM框架。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号