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RKPM2D: an open-source implementation of nodally integrated reproducing kernel particle method for solving partial differential equations

机译:RKPM2D:用于求解局部微分方程的结节集成再现核颗粒方法的开源实现

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We present an open-source software RKPM2D for solving PDEs under the reproducing kernel particle method (RKPM)-based meshfree computational framework. Compared to conventional mesh-based methods, RKPM provides many attractive features, such as arbitrary order of continuity and discontinuity, relaxed tie between the quality of the discretization and the quality of approximation, simple h-adaptive refinement, and ability to embed physics-based enrichment functions, among others, which make RKPM promising for solving challenging engineering problems. The aim of the present software package is to support reproducible research and serve as an efficient test platform for further development of meshfree methods. The RKPM2D software consists of a set of data structures and subroutines for discretizing two-dimensional domains, nodal representative domain creation by Voronoi diagram partitioning, boundary condition specification, reproducing kernel shape function generation, domain integrations with stabilization, a complete meshfree solver, and visualization tools for post-processing. In this paper, a brief overview that covers the key theoretical aspects of RKPM is given, such as the reproducing kernel approximation, weak form using Nitsche's method for boundary condition enforcement, various domain integration schemes (Gauss quadrature and stabilized nodal integration methods), as well as the fully discrete equations. In addition, the computer implementation aspects employed in RKPM2D are discussed in detail. Benchmark problems solved by RKPM2D are presented to demonstrate the convergence, efficiency, and robustness of the RKPM implementation.
机译:我们介绍了一个开源软件RKPM2D,用于在再现内核粒子方法(RKPM)的网格普通计算框架下解决PDE。与传统网格的方法相比,RKPM提供了许多有吸引力的特征,例如连续性和不连续性的任意顺序,在离散化的质量和近似质量之间的放松系列,简单的H自适应细化以及嵌入物理学的能力富集职能,其中,使RKPM承诺解决具有挑战性的工程问题。目前软件包的目的是支持可重复的研究,并用作进一步发展网外方法的有效测试平台。 RKPM2D软件由一组数据结构和子程序组成,用于使二维域,Nodal代表域通过Voronoi图分区,边界条件规范,再现内核形状函数生成,具有稳定的域集成,一个完整的网格免费解算器和可视化后处理工具。在本文中,给出了涵盖RKPM的关键理论方面的简要概述,例如使用Nitsche的边界条件执法方法,各种域集成方案(高斯正交和稳定的节点集成方法)的再现内核近似,弱形式。以及完全离散的方程。另外,详细讨论了RKPM2D中采用的计算机实现方面。提出了由RKPM2D解决的基准问题,以展示RKPM实现的收敛性,效率和鲁棒性。

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