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首页> 外文期刊>International journal of geomechanics >Process Simulation and Mesoscopic Analysis of Rockfill Dam Compaction Using Discrete Element Method
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Process Simulation and Mesoscopic Analysis of Rockfill Dam Compaction Using Discrete Element Method

机译:离散元法在堆石坝压实过程模拟与细观分析中的应用

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摘要

To investigate the mesoscopic mechanism of rockfill dam material compaction, the discrete element method is used to simulate the entire compaction process. An irregular aggregate model is first established using laser scanning technology, and an accurate method for determining the load of a roller is proposed. The entire construction process of the rockfill dam-including the dumping, paving, and compaction phases-is then simulated using a two-dimensional (2D) particle flow code model, and a quantitative relationship between the porosity of the 2D model and the actual porosity is proposed for analyzing the influence of different compaction parameters and the motion law of the aggregate. The results show that the compaction effectiveness of the dam material improves with decreasing roller velocity and lift thickness, as well as with an increase in the excitation force. It is shown that the vertical acceleration of the particles decreases exponentially along the depth. Furthermore, the vertical velocity of the particles decreases with increasing compaction passes at the same depth, while the rate of increase in the vertical displacement of the particles decreases. During the compaction settlement process, the contribution of small particles is more apparent than that of larger particles. The mesoscopic mechanism of rockfill dam material compaction is analyzed, and a basis for reasonably selecting the compaction parameters and gradation is derived. Moreover, this method is less time-consuming and labor-intensive and costs less than conventional compaction experiments.
机译:为了研究堆石坝材料压实的细观机理,采用离散元法模拟了整个压实过程。首先利用激光扫描技术建立了不规则的骨料模型,并提出了一种确定辊子载荷的精确方法。然后,使用二维(2D)颗粒流代码模型模拟堆石坝的整个施工过程(包括倾倒,摊铺和压实阶段),并模拟2D模型的孔隙率与实际孔隙率之间的定量关系。建议用于分析不同压实参数的影响和骨料的运动规律。结果表明,坝材料的压实效果随着辊速和升程厚度的减小以及激振力的增加而提高。结果表明,颗粒的垂直加速度沿深度呈指数下降。此外,在相同深度,随着增加的压实次数,颗粒的垂直速度降低,而颗粒的垂直位移的增加速率降低。在压实沉降过程中,小颗粒的作用比大颗粒的作用更明显。分析了堆石坝材料压实的细观机理,为合理选择压实参数和等级提供了依据。此外,与传统的压实实验相比,该方法耗时少,劳动强度大,成本也低。

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