通过实验和 DEM 模拟研究离析颗粒组合体的三轴加载问题

IF 2.4 3区 工程技术 Granular Matter Pub Date : 2024-10-04 DOI:10.1007/s10035-024-01470-y
Venkata Rama Manoj Pola, Ratna Kumar Annabattula
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引用次数: 0

摘要

本文介绍了一种新颖的基于体力的位置依赖性约束,用于使用离散元素法模拟三轴测试。上述方法用于对玻璃球的单分散和分离组件进行三轴模拟。模拟得到的宏观载荷响应与实验载荷响应进行了验证。介绍了一种网格构建算法,用于检查三轴模拟中应用的约束是否准确。通过三轴模拟获得的粒子位移数据可用于获取粒子平均应变张量。然后再用它来比较单分散装配体和分离装配体之间的应变定位。据观察,在离析组件中,两相颗粒之间的界面是应变定位的障碍,较小的颗粒平均会优先承受较高程度的剪切应变。
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Study of triaxial loading of segregated granular assemblies through experiments and DEM simulations

A novel position-dependent body force-based confinement for simulating triaxial tests using the Discrete Element Method is presented. The said method is used to perform triaxial simulations on mono-disperse and segregated assemblies of glass spheres. The macroscopic load response obtained in simulations is validated with the experimental load response. A mesh construction algorithm is presented to check whether the confinement applied in the triaxial simulations is accurate. The particle displacement data obtained from triaxial simulations are used to obtain a particle-wise average strain tensor. This is further used to compare the strain localisation between the mono-disperse and segregated assemblies. It is observed that, in the segregated assembly, the interface between the two particle phases acts as a barrier for strain localisation, and the smaller particles preferentially undergo a higher degree of shear strain on average.

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来源期刊
Granular Matter
Granular Matter MATERIALS SCIENCE, MULTIDISCIPLINARY-MECHANICS
CiteScore
4.30
自引率
8.30%
发文量
95
期刊介绍: Although many phenomena observed in granular materials are still not yet fully understood, important contributions have been made to further our understanding using modern tools from statistical mechanics, micro-mechanics, and computational science. These modern tools apply to disordered systems, phase transitions, instabilities or intermittent behavior and the performance of discrete particle simulations. >> Until now, however, many of these results were only to be found scattered throughout the literature. Physicists are often unaware of the theories and results published by engineers or other fields - and vice versa. The journal Granular Matter thus serves as an interdisciplinary platform of communication among researchers of various disciplines who are involved in the basic research on granular media. It helps to establish a common language and gather articles under one single roof that up to now have been spread over many journals in a variety of fields. Notwithstanding, highly applied or technical work is beyond the scope of this journal.
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