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Efficient DEM simulations of railway ballast using simple particle shapes

机译:使用简单颗粒形状对铁路道砟进行高效的 DEM 模拟

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摘要

Abstract For complex shaped materials, computational efficiency and accuracy of DEM models are usually opposing requirements. In the literature, DEM models of railway ballast often use very complex and computationally demanding particle shapes in combination with very simple contact laws. In contrast, this study suggests efficient DEM models for railway ballast using simple particle shapes together with a contact law including more physical effects. In previous works of the authors, shape descriptors, calculated in a shape analysis of two types of ballast, were used to construct simple particle shapes (clumps of three spheres). Using such a shape in DEM simulations of compression and direct shear tests, accurate results were achieved only when the contact law included additional physical effects e.g.?edge breakage. A parametrisation strategy was developed for this contact law comparing DEM simulations with the measurements. Now, all the constructed simple particle shapes are parametrised allowing to study their suitability and relating their shape descriptors to those of railway ballast. The most suitable particle shapes consist of non-overlapping spheres, thus have a high interlocking potential, and have lowest sphericity and highest convexity values. In a micromechanical analysis of the four best performing shapes, three shapes show similar behaviour on the bulk and the micro-scale, while one shape differs clearly on the micro-scale. This analysis shows, which shapes can be expected to produce similar results in DEM simulations of other tests/load cases. The presented approach is a step towards both efficient and accurate DEM modelling of railway ballast.Graphic abstract
机译:摘要 对于形状复杂的材料,DEM模型的计算效率和精度通常是相反的要求。在文献中,铁路道砟的DEM模型通常使用非常复杂且计算要求很高的颗粒形状以及非常简单的接触定律。相比之下,本研究提出了有效的铁路道砟 DEM 模型,使用简单的颗粒形状以及包含更多物理效应的接触定律。在作者以前的著作中,在对两种类型的压载物进行形状分析时计算的形状描述符被用来构建简单的颗粒形状(三个球体的团块)。在压缩和直接剪切试验的DEM模拟中使用这种形状,只有当接触法包括额外的物理效应(例如边缘断裂)时,才能获得准确的结果。针对该接触定律开发了一种参数化策略,将 DEM 模拟与测量结果进行比较。现在,所有构建的简单颗粒形状都进行了参数化,从而可以研究它们的适用性,并将其形状描述符与铁路道砟的形状描述符联系起来。最合适的颗粒形状由非重叠球体组成,因此具有高互锁电位,并具有最低的球形度和最高的凸度值。在对四种性能最佳形状的微观力学分析中,三种形状在体积和微观尺度上表现出相似的行为,而一种形状在微观尺度上明显不同。该分析表明,在其他测试/荷载工况的 DEM 模拟中,哪些形状有望产生类似的结果。所提出的方法是朝着高效和准确的铁路道砟 DEM 建模迈出的一步。图形摘要

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