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Contact force network evolution in active earth pressure state of granular materials: photo-elastic tests and DEM

机译:接触力网络演变在颗粒材料的主动接地压力状态下:照片弹性测试和DEM

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The paper deals with a quasi-static behaviour of cohesion-less granular material in active earth pressure state. Photo-elastic model tests on a rigid wall, translating out of the granular material, are analyzed. Grain crushing tests are used to estimate the range of contact forces during the model tests. Substitute granular material (low optical sensitivity glass granules) is employed. The focus is on the evolution of contact force network with deformation of granular material. The model tests are simulated using the discrete element method (DEM) to compare physical and numerical full-field force network structure and the maximum/minimum stress level. The same model geometry, loading scheme and grain size distribution, as in the model tests, are accepted in DEM simulations, although only a single layer of grains is modelled. DEM model correctly predicts the overall structure of the force network and its characteristic features, including localization. It also gives the stress level close to the experimental one and properly identifies the areas of phase transitions.
机译:本文涉及在活性地下压力状态下的凝聚力颗粒材料的准静态行为。分析光弹性模型在刚性墙上进行的测试,从粒状材料中进行分析。谷物破碎测试用于在模型测试期间估计接触力范围。采用替代粒状材料(低光学灵敏度玻璃颗粒)。重点是接触力网络的演变,具有粒状材料变形。使用离散元素方法(DEM)进行模拟测试,以比较物理和数值全场力网络结构和最大/最小应力水平。在DEM仿真中接受相同的模型几何,装载方案和粒度分布,如在模型测试中,尽管仅建模了一层晶粒。 DEM模型正确预测了力网络的整体结构及其特征特征,包括本地化。它还使应力水平接近实验性,并且正确地识别相变的区域。

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