论文标题

基于复杂网络的粘性土壤颗粒斜坡不稳定性

Slope plate of sticky soil granular slope instability based on complex network

论文作者

Zhang, Shengdong, You, Shihui, Chen, Longfei, Liu, Xiaofei

论文摘要

当金属板继续向下,并在获得斜率累积器的不稳定性和失败期间,获得了颗粒斜率蓄能器模型的不稳定性和故障过程,并获得了土壤粒子速度和斜率滑动的二维总速度载体。宏反应过程,例如去除裂纹表面的角度和斜率积累体斜率顶部的平均速度。在自然积累下构建斜率积累体颗粒的非向力网络模型,并研究其滑动表面的位置,并将结果与​​实验结果进行比较。最后,使用复杂的网络方法来分析斜坡积聚体斜坡顶部粒子的接触力链网络的拓扑特征,在坡度积累体的斜率不稳定期间,获得了平均程度,聚类系数和平均最短路径。该方法的进化规则用于验证其与强度降低方法结合使用的准确性。研究结果表明,平均最短路径可以对斜坡沉积物的不稳定性和失败提供更有效的预警。复杂的网络理论用于研究斜率沉积物及其力链的宏响应。网络的宏观结构之间的相互关系为研究斜率不稳定性提供了一种新的数学分析方法。

The particle discrete element simulation of the instability and failure process of the granular slope accumulator model when the metal plate continues downward is obtained, and the two-dimensional total velocity vector of soil particle velocity and slope slip during the instability and failure of the slope accumulator are obtained. Macro-response processes such as removing the angle of the crack surface and the average velocity in the y-direction of the slope top of the slope accumulation body. Construct a normal force chain undirected network model of the slope accumulation body particles under natural accumulation, and study the location of its slip surface, and The results are compared with the experimental results. Finally, the complex network method is used to analyze the topological characteristics of the contact force chain network of the particles on the slope top of the slope accumulation body, and the average degree, clustering coefficient and average shortest path are obtained during the slope instability of the slope accumulation body. The evolutionary rule of the method is used to verify its accuracy in combination with the strength reduction method. The research results show that the average shortest path can provide a more effective early warning of the instability and failure of slope deposits. A complex network theory is used to study the macro response of the slope deposits and its force chain. The interrelationship between the macroscopic structure of the network provides a new mathematical analysis method for the study of slope instability.

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