首页> 外文期刊>International Journal of Civil Engineering,Transaction A:Civil Engineering >Discrete Element Modeling of Drained Triaxial Test: Flexible and Rigid Lateral Boundaries
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Discrete Element Modeling of Drained Triaxial Test: Flexible and Rigid Lateral Boundaries

机译:排水三轴试验的离散元建模:柔性和刚性横向边界

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摘要

In the present paper, drained triaxial test on granular materials is simulated by discrete element method. Two types of boundary conditions including rigid and flexible boundaries are modeled in the tests. To simulate flexible boundary condition, a new algorithm based on linking the MATLAB and PFC3D codes is proposed. In this algorithm, triaxial test samples are simulated in PFCD3D and the spatial coordinates of particles are transferred to MATLAB code. Then, boundary particles are identified by irradiation from centerline of specimen and their identities are transferred back to PFC3D to impose boundary forces. The presented algorithm is relatively simple and there is no need of tessellation at the boundary surface. Besides, employment of MATLAB code improves the efficiency of computations. Imposition of confining pressure via normal forces to the outer surface of boundary and precise identification of boundary particles in large deformation are other advantages of the proposed algorithm. After validation of the proposed algorithm by some experimental tests, a comprehensive survey has been performed on micro- and macro-behavior of samples simulated by rigid and flexible boundaries.
机译:本文采用离散元法模拟了颗粒材料的排水三轴试验。在测试中对包括刚性边界和柔性边界在内的两种边界条件进行了建模。为了模拟柔性边界条件,提出了一种基于MATLAB和PFC3D代码链接的新算法。在该算法中,在PFCD3D中模拟了三轴测试样本,并将粒子的空间坐标转换为MATLAB代码。然后,通过从样品中心线照射来识别边界粒子,并将其身份转移回PFC3D以施加边界力。所提出的算法相对简单,并且不需要在边界表面进行细分。此外,使用MATLAB代码可提高计算效率。通过法向力对边界外表面施加约束压力以及在大变形中精确识别边界粒子是该算法的其他优点。在通过一些实验测试验证了提出的算法后,已经对由刚性和柔性边界模拟的样本的微观和宏观行为进行了全面的调查。

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