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Analysis of the preloading effect on shear strength for dense sandy soils A discrete element modeling

机译:分析对致密砂土剪切强度的预载效应分立元素建模

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This paper presents a numerical study of the effect of preloading on the shear strength of dense sandy soils. For this purpose, a discrete elements modeling of the direct shear box test is developed. The model is based on the molecular dynamics method with circular-shaped elements. The intergranular contact normal forces are computed using the linear viscoelastic model whereas the tangential forces are computed through a viscoelastic perfectly plastic model. A rolling friction model is incorporated in order to take account of the damping in grains rolling movement. The sheared samples are built by pluviation. In a first series, the deposited samples are sheared under confining stresses of 50, 100 and 200 kPa. Then, the samples are sheared under the same confining stresses after a preloading-unloading cycle with different vertical preloads. The performed simulations reproduce well the features of shear tests on dense sands. Furthermore, they show that the preloading has a slight effect in the initial phase of shearing, i.e., before reaching the peak of shear strength. However, after having passed the peak, the desinterlocking of the grains results in a loss of the preloading history. Therefore, the shear strength and the critical void ratio become insensitive to the preload history.
机译:本文介绍了预加载对浓度砂土剪切强度效果的数值研究。为此目的,开发了直接剪切盒测试的离散元素建模。该模型基于具有圆形元件的分子动力学方法。使用线性粘弹性模型计算晶间接触法矩形,而切向力通过粘弹性完美的塑料模型计算。结合了滚动摩擦模型,以考虑谷物滚动运动中的阻尼。剪切样品由普拉构建。在第一个系列中,沉积的样品在限制50,100和200kPa的限制下剪切。然后,在具有不同垂直预载荷的预加载 - 卸载循环之后,样品在相同的限制应力下剪切。所表演的模拟再现厚度剪切试验的特征。此外,他们表明预加载在剪切强度峰值之前,预加载在剪切的初始阶段具有轻微的效果。然而,在通过峰值之后,谷物的去接口导致预加载历史的损失。因此,剪切强度和临界空隙率对预加载历史不敏感。

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