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Numerical study on stress states and fabric anisotropies in soilbags using the DEM

机译:使用DEM的土袋应力状态和织物各向异性的数值研究

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Wrapping granular soils in geosynthetic containers, such as soilbags, results in a considerable increase in the bearing capacity due to the effective restraint on the dilatancy of the soil. This paper numerically investigates the stress states and fabric anisotropies in the wrapped soil using the discrete element method, providing a novel perspective for new insights into the reinforcement mechanisms and the development of constitutive relations for soilbags. The two most anticipated loading conditions, namely, unconfined compression and simple shear, are considered, and numerical predictions are compared to experimental results. During unconfined compression, both global and local p q stress paths evolve linearly, having the same slope until the global failure of the wrapping geosynthetic. Under simple shear, the global stress path approaches the critical state line first and then turns to the compression line of the wrapped soil. Some local loading unloading stress paths are observed, which may account for the high damping of soilbags during cyclic shear. The reduced fabric anisotropies of the normal and tangential force chains suggest greater confinement from the lateral sides of the geosynthetic container in either loading course. The performance and mechanisms of the soilbag earth reinforcement method, i.e., confinement and interlocking, can be better understood based on these new findings on the stress states and fabric anisotropies. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在土工合成材料容器(例如土袋)中包裹颗粒状土壤,由于有效地限制了土壤的膨胀性,因此导致了承载能力的显着提高。本文使用离散元方法对包裹土的应力状态和织物各向异性进行了数值研究,为了解土袋的增强机理和发展本构关系提供了新的视角。考虑了两个最预期的加载条件,即无边压缩和简单剪切,并将数值预测与实验结果进行了比较。在无限制压缩过程中,整体和局部p q应力路径均线性发展,具有相同的斜率,直到包裹土工合成材料的整体破坏。在简单剪切作用下,整体应力路径首先接近临界状态线,然后转向包裹土的压缩线。观察到一些局部加载-卸载应力路径,这可能是循环剪切期间土袋的高阻尼的原因。法向力和切向力链的织物各向异性降低,表明在任一加载过程中,土工合成材料容器的侧面均受到更大的限制。基于这些关于应力状态和织物各向异性的新发现,可以更好地理解土袋土层加固方法的性能和机理,即约束和联锁。 (C)2016 Elsevier Ltd.保留所有权利。

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