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DEM modeling of pullout behavior of geogrid reinforced ballast: The effect of particle shape

机译:土工格栅加筋道ast的拉拔性能DEM建模:颗粒形状的影响

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The performance of a geogrid reinforced system depends heavily on the properties of interface between the interacting components (i.e., backfill soil and geogrid inclusion). The comprehensive understanding of soil-geogrid interaction requires proper consideration of the true aperture geometry and the discontinuous nature of backfill soil. Based on the calibrated parameters, this, paper presents a simulation procedure using PFC3D to reproduce the realistic pull-out behaviors of a triaxial geogrid embedded in various ballast aggregates with diverse particle shapes. The load transfer behaviors across the interacting components have been visualized in terms of the evolution of bond forces along the geogrid and the evolution of contact forces across the particle assembly. Meanwhile, the inherent microscopic changes accounting for the regression of macroscopic strength and the correlation between macro pull-out force and micro anisotropy parameters have been addressed. In addition, the differences in macro performance and the particle responses produced by different shapes of particles are also systematically discussed to justify the significant role of particle geometry. The findings obtained in this study are expected to provide better understanding of soil-geogrid interaction and the improved interlocking caused by irregular ballast geometry. (C) 2016 Elsevier Ltd. All rights reserved.
机译:土工格栅增强系统的性能在很大程度上取决于相互作用组件之间的界面特性(即回填土和土工格栅夹杂物)。对土壤-土工交错层相互作用的全面理解需要适当考虑孔的真实几何形状和回填土的不连续性。基于校准后的参数,本文提出了一种使用PFC3D的模拟程序,以重现嵌入在具有不同颗粒形状的各种压载聚集物中的三轴土工格栅的实际拉拔行为。通过沿土工格栅的结合力的演变和跨粒子组件的接触力的演变,已经可视化了跨相互作用组件的载荷传递行为。同时,解决了固有的微观变化,该变化解释了宏观强度的回归以及宏观拉拔力与微观各向异性参数之间的关系。此外,还对宏观性能的差异以及由不同形状的颗粒产生的颗粒响应进行了系统地讨论,以证明颗粒几何形状的重要作用。这项研究中获得的发现有望更好地理解土壤-土工格栅的相互作用,以及由不规则的压载物几何形状引起的改善的互锁。 (C)2016 Elsevier Ltd.保留所有权利。

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