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Three dimensional discrete element method simulations of interface shear

机译:界面剪切的三维离散元方法模拟

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Granular-continuum interfaces are widely present in geotechnical applications, including deep foundations, retaining structures, and anchoring applications. Interface mechanical properties are a function of the characteristics of the contacting soil and the opposing interface. Therefore, a robust understanding of granular-continuum interface behavior is essential to geotechnical practice. In this work, we did the following: (1) summarized the recent research on the effects of interface roughness, soil density, particle shape, and friction coefficient on interface behavior and strength; (2) simulated granular-continuum interface shear using the three-dimensional discrete element method (DEM); (3) compared the trends in DEM results to previously published physical experiments; and (4) investigated the microscale responses of the interface simulations. The DEM simulations were generally in good agreement with previously reported experimental results for similar interface roughness. DEM simulations give a bilinear strength-displacement trend consistent with that previously reported from physical experiments. The microscale investigations showed that, in the case of rougher interfaces, contact reorientation was the interface failure mechanism, and in the case of smoother interfaces, it was contact sliding. The mobilization of rougher interfaces tends to alter the force distribution in the surrounding soil. (C) 2018 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:颗粒连续体界面广泛应用于岩土工程应用中,包括深层基础,挡土结构和锚固应用。界面机械性能是接触土壤和相对界面的特性的函数。因此,对颗粒连续体界面行为的深入了解对于岩土工程实践至关重要。在这项工作中,我们做了以下工作:(1)总结了有关界面粗糙度,土壤密度,颗粒形状和摩擦系数对界面行为和强度的影响的最新研究; (2)使用三维离散元方法(DEM)模拟颗粒-连续体界面剪切; (3)将DEM结果的趋势与以前发表的物理实验进行了比较; (4)研究了界面模拟的微观响应。对于类似的界面粗糙度,DEM仿真通常与先前报道的实验结果非常吻合。 DEM模拟给出的双线性强度-位移趋势与先前从物理实验中报告的趋势一致。微观研究表明,在界面较粗糙的情况下,接触重新定向是界面失效的机制,在界面较光滑的情况下,是接触滑动。较粗糙的界面的移动往往会改变周围土壤中的力分布。 (C)2018年由Elsevier B.V.代表日本岩土工程学会制作和托管。

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