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An object-oriented approach to dual reciprocity boundary element method applied to 2D elastoplastic problems

机译:一种面向对象的双互补边界元方法方法应用于2D弹塑性问题

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摘要

Purpose - The purpose of this paper is to describe further developments on a novel formulation of the boundary element method (BEM) for inelastic problems using the dual reciprocity method (DRM) but using object-oriented programming (OOP). As the BEM formulation generates a domain integral due to the inelastic stresses, the DRM is employed in a modified form using polyharmonic spline approximating functions with polynomial augmentation. These approximating functions produced accurate results in BEM applications for a range of problems tested, and have been shown to converge linearly as the order of the function increases. Design/methodology/approach - A programming class named DRMOOP, written in C++ language and based on OOP, was developed in this research. With such programming, general matrix equations can be easily established and applied to different inelastic problems. A vector that accounts for the influence of the inelastic strains on the displacements and boundary forces is obtained. Findings - The C++ DRMOOP class has been implemented and tested with the BEM formulation applied to classical elastoplastic problem and the results are reported at the end of the paper. Originality/value - An object-oriented technology and the C++ DRMOOP class applied to elastoplastic problems.
机译:目的 - 本文的目的是描述使用双互惠法(DRM)的非弹性问题的边界元素方法(BEM)的新颖制剂的进一步发展,但使用面向对象的编程(OOP)。由于BEM制剂由于非弹性应力而产生畴内整体,因此使用具有多项式增强的多谐曲线近似函数以修改形式使用DRM。这些近似函数在测试的一系列问题中产生了准确的效果,并且已被显示为随着函数的顺序增加而线性地收敛。设计/方法/方法 - 在本研究中开发了一种以C ++语言编写的DRMOOP编程类,并在本研究中开发。利用这种编程,可以容易地建立一般的矩阵方程并应用于不同的内部问题。获得了用于对位移和边界力影响的影响的载体。调查结果 - C ++ DrMoop类已经实施和测试了应用于古典弹塑性问题的BEM制剂,结果在纸张结束时报道了结果。原创性/值 - 面向对象的技术和C ++ DrMoop类应用于弹塑性问题。

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