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DEM simulation of collapse behaviours of unsaturated granular materials under general stress states

机译:一般应力状态下非饱和粒状材料倒塌行为的DEM模拟

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In this study, a numerical simulation of true triaxial tests was conducted using the three-dimensional distinct element method (DEM) in order to examine how unsaturated granular materials collapse under general stress states. The collapse process was simulated by reducing the intergranular adhesive forces corresponding to the effect of the capillary suction during the isotropic compression and the shearing processes under general stress states. Based on the relationship between the void ratio and the mean principal stress after collapsing, it was found that the initially soaked compression line obtained with an inundation test may be used to predict the collapse of granular materials under a general stress state. From the analysis for the fabric tensor in the particle aggregate after collapsing, the skeleton structures became identical to those in which no intergranular adhesive force was applied. Furthermore, even though the collapse process was simulated under a plane strain condition, the shear band inside the sample did not occur clearly, and the slippage between particles was instead induced randomly during collapsing.
机译:在这项研究中,使用三维离散元方法(DEM)进行了真正的三轴试验的数值模拟,以研究不饱和粒状材料在一般应力状态下如何塌陷。通过减小与各向同性压缩过程中的毛细吸力作用和在一般应力状态下的剪切过程相对应的晶间粘附力,来模拟塌陷过程。基于孔隙率与塌陷后平均主应力之间的关系,发现通过浸水试验获得的初始浸泡压缩线可用于预测颗粒在一般应力状态下的塌陷。从塌陷后的颗粒聚集体中的织物张量的分析,骨架结构变得与没有施加晶间粘合力的骨架结构相同。此外,即使在平面应变条件下模拟了塌陷过程,样品内部的剪切带也没有清晰地出现,而是在塌陷过程中随机地引起了颗粒之间的滑动。

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