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首页> 外文期刊>Computer Methods in Applied Mechanics and Engineering >A structured grid based B-Spline finite elements method combining local isogeometry analysis technique for crack problems
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A structured grid based B-Spline finite elements method combining local isogeometry analysis technique for crack problems

机译:基于结构化网格的B样条有限元方法,其局部异构分析技术对裂纹问题

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摘要

In this paper, a structured mesh based B-Spline finite elements (BSFE) method combining the isogeometry analysis technique is developed for analyzing crack problems. The BSFE is used for the global approximation and the isogeometry analysis technique is performed on the local crack tip region which is covered by several elements around the crack tip. The geometry of the selected crack tip region is described by the B-Spline basis functions in parameter space. Meanwhile, a specific function with relevant parameters is introduced into geometry description for catching the characters of the solution around the crack tip. In addition, the B-Spline basis functions are also used as basis functions to approximate the displacement field in the local region under the parameter space. The relevant B spline basis functions used for approximation in local region are replaced by the corresponding BSFE basis functions used in the interface elements adjacent to the local region and the seamless connection between the global approximation and the local isogeometry analysis can be easily achieved. For crack problems, no enrichment functions and remeshing are needed in this new method. This newly developed method is applied to the stress analysis of 2D linear elasticity crack problems in order to investigate its performance and study parameters. Numerical results show that the present method is highly accurate and stable. The new method has a promising potential for practical applications. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文开发了一种结构化网的基于网状的B样条有限元(BSFE)方法,用于分析裂纹问题。 BSFE用于全局近似,并且在局部裂缝尖端区域上执行异构测量分析技术,该裂缝尖端区域被围绕裂缝尖端的若干元件覆盖。所选择的裂缝尖端区域的几何形状由参数空间中的B样条函数描述。同时,将具有相关参数的特定功能引入到几何形状描述中,用于捕捉裂缝尖端周围的溶液的特征。另外,B样条函数也用作近似于参数空间下局部区域中的位移场的基本函数。用于局部区域中的近似的相关B样条基函数由与局部区域相邻的接口元件中使用的相应的BSFE基函数替换,并且可以容易地实现全局近似与局部异构法分析之间的无缝连接。对于裂纹问题,在这种新方法中不需要富集功能和倒退。这种新开发的方法应用于2D线性弹性裂纹问题的应力分析,以研究其性能和研究参数。数值结果表明,本方法高度准确且稳定。新方法具有对实际应用的有希望的潜力。 (c)2019 Elsevier B.v.保留所有权利。

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