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Effects of Particle Number and Size Distribution on Macroscopic Mechanical Properties of Rock Models in DEM

机译:颗粒数量和粒度分布对DEM岩石模型宏观力学性能的影响

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摘要

In this study, a new Distinct Element Method (DEM) code had been developed, and a series of rock test simulations, such as uniaxial compression test, uniaxial tension test and Brazilian test are performed to investigate the effects of particle number and size distribution on macroscopic mechanical properties of rock models. Each simulation result was in good agreement with actual experimental results conducted by previous researchers, and the findings obtained from this study can be summarized as follows. The variation of calculated values of macroscopic mechanical properties decreases with increasing the number of particles. When the number of particles is 10000 or more, stable results are obtained as a rock test. Moreover, macroscopic mechanical properties of rock model, such as uniaxial compressive strength, Young's modulus and uniaxial tensile strength are significantly affected by porosity of the rock model. Since small particles fill the space among large particles, the porosity of the rock model decreases with increasing the maximum/minimum radius ratio of the particles, and particles are densely packed in the rock model. When the particle is closely arranged, the displacement of each particle is restrained with the adjacent particles even if the bond between particles breaks. As a result, the macroscopic mechanical properties of rock model increase greatly.
机译:在这项研究中,开发了一种新的离散元方法(DEM)代码,并进行了一系列岩石测试模拟,如单轴压缩测试,单轴拉伸测试和巴西测试,以研究颗粒数和粒度分布对岩石模型的宏观力学性能。每个模拟结果与以前的研究人员进行的实际实验结果非常吻合,从这项研究中获得的发现可以总结如下。宏观机械性能的计算值的变化随着颗粒数量的增加而减小。当颗粒数为10000以上时,作为岩石试验获得稳定的结果。此外,岩石模型的宏观力学性能,如单轴抗压强度,杨氏模量和单轴抗拉强度,受孔隙度的影响很大。由于小颗粒填充了大颗粒之间的空间,因此岩石模型的孔隙度随颗粒最大/最小半径比的增加而减小,并且颗粒紧密堆积在岩石模型中。当颗粒紧密排列时,即使颗粒之间的键断裂,每个颗粒的位移也受到相邻颗粒的限制。结果,岩石模型的宏观力学性能大大提高。

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