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Simulation of shear bands with Soft PARticle Code (SPARC) and FE

机译:使用软件参数(SPARC)和有限元模拟剪切带

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摘要

The aim of this paper is to numerically investigate the development, thickness and orientation of shear bands, in biaxial test with two approaches towards solving problems of continuum mechanics, namely the meshless “Soft PARticle” method and the mesh based Finite Element method. Soft PArticle Code (SPARC) is a straightforward collocation numerical method based on strong formulation, in which a first order polynomial basis is adopted for the evaluation of spatial derivatives in partial differential equations. A novel nonlinear constitutive model— barodesy for clay, is adopted in this study. The biaxial test, which involves homogeneous, and later inhomogeneous localized deformation is simulated using the Soft PArticle Code and the Finite Element method. The inclination and thickness of the shear bands are evaluated and analysed with the earlier experimental, theoretical and numerical investigations. Furthermore, simulation results are compared and presented to demonstrate the advantages and limitations of SPARC in comparison to FE method.
机译:本文的目的是在双轴测试中通过两种解决连续力学问题的方法,即无网格“软粒子”方法和基于网格的有限元方法,对剪切带的发展,厚度和取向进行数值研究。软部分代码(SPARC)是一种基于强公式的直接配置数值方法,其中采用一阶多项式基础来评估偏微分方程中的空间导数。本研究采用了一种新颖的非线性本构模型-黏土的重晶石。使用Soft PArticle Code和Finite Element方法模拟涉及均匀且随后不均匀的局部变形的双轴试验。剪切带的倾斜度和厚度通过早期的实验,理论和数值研究进行评估和分析。此外,比较并给出了仿真结果,以证明SPARC与有限元方法相比的优点和局限性。

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