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Stochastic structural model of rock and soil aggregates by continuum-based discrete element method

机译:基于连续体的离散元法的土石料随机结构模型

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This paper first presents a stochastic structural model to describe the random geometrical features of rock and soil aggregates. The stochastic structural model uses mixture ratio, rock size and rock shape to construct the microstructures of aggregates, and introduces two types of structural elements (block element and jointed element) and three types of material elements (rock element, soil element, and weaker jointed element) for this microstructure. Then, continuum-based discrete element method is used to study the deformation and failure mechanism of rock and soil aggregate through a series of loading tests. It is found that the stress-strain curve of rock and soil aggregates is nonlinear, and the failure is usually initialized from weaker jointed elements. Finally, some factors such as mixture ratio, rock size and rock shape are studied in detail. The numerical results are in good agreement with in situ test. Therefore, current model is effective for simulating the mechanical behaviors of rock and soil aggregates.
机译:本文首先提出了一种随机的结构模型来描述岩石和土壤聚集体的随机几何特征。随机结构模型利用混合比,岩石大小和岩石形状构造集料的微观结构,并引入两种结构元素(块状元素和节理元素)和三种类型的物质元素(岩石元素,土壤元素和弱节理)。元素)。然后,通过基于连续体的离散元方法,通过一系列荷载试验研究了岩土集料的变形与破坏机理。研究发现,岩石和土壤聚集体的应力-应变曲线是非线性的,并且破坏通常是由较弱的节理单元引起的。最后,详细研究了混合比,岩石大小和岩石形状等因素。数值结果与原位测试吻合良好。因此,当前模型对于模拟岩石和土壤团聚体的力学行为是有效的。

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