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Experimental Study of the Composition and Structure of Granular Media in the Shear Bands Based on the HHC-Granular Model

机译:基于HHC-颗粒模型的剪切带颗粒介质组成与结构的实验研究

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摘要

The researchers cannot control the composition and structure of coarse grained soil in the indoor experiment because the granular particles of different size have the characteristics of random distribution and no sorting. Therefore, on the basis of the laboratory tests with the coarse grained soil, the HHC-Granular model, which could simulate the no sorting and random distribution of different size particles in the coarse-grained soil, was developed by use of cellular automata method. Meanwhile, the triaxial numerical simulation experiments of coarse grained soil were finished with the different composition and structure soil, and the variation of shear strength was discussed. The results showed that the internal friction angle was likely to reduce with the increasing of gravel contents in the coarse-grained soil, but the mean internal friction angle significantly increased with the increment of gravel contents. It indicated that the gravel contents of shear bands were the major factor affecting the shear strength.
机译:在室内实验中,研究人员无法控制粗粒土的组成和结构,因为不同大小的粒状颗粒具有随机分布且不分选的特征。因此,在对粗粒土进行实验室测试的基础上,利用细胞自动机方法,建立了可以模拟粗粒土中不同粒径颗粒无分选和随机分布的HHC-颗粒模型。同时,对不同组成和结构的粗粒土进行了三轴数值模拟实验,并讨论了抗剪强度的变化。结果表明,粗粒土中内摩擦角可能随砾石含量的增加而减小,但平均内摩擦角随砾石含量的增加而显着增加。表明剪切带的砾石含量是影响剪切强度的主要因素。

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