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Fourier series-based discrete element method for two-dimensional concave irregular particles

机译:基于傅里叶系列的三维凹不规则粒子的离散元件方法

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This paper aims to develop a discrete element method (DEM) framework applicable to two-dimensional star shape particles with concave features. Particle contours are represented by the Fourier series expansion of radii to take advantage of its limited number of coefficients. The essential ingredients of DEM, i.e., contact detection and contact resolution, are tailored to consider the possible concave feature of star-shape particles and the overlapping area of particles. A multilevel method is adopted to identify possible multiple contacts between two particles or between a particle and a boundary. The approaches for determining the contact geometric features of both convex-shape and concave-shape overlapping areas are presented. The methods to calculate the contact forces and to determine the overlapping area-based normal contact stiffness are provided. With the developed DEM program-SSP2D, three series of numerical tests are conducted to demonstrate its capability and efficiency in modeling dynamic and pseudo-static behaviors of concave particles.
机译:本文旨在开发可应用于具有凹形特征的二维星形颗粒的离散元素方法(DEM)框架。粒子轮廓由半径的傅里叶串联扩展表示,以利用其有限数量的系数。 DEM,即接触检测和接触分辨率的基本成分被定制,以考虑星形颗粒和颗粒的重叠区域的可能凹形特征。采用多级方法来识别两个颗粒或颗粒与边界之间的多个触点。提出了用于确定凸形和凹形重叠区域的接触几何特征的方法。提供了计算接触力和确定基于区域的正常接触刚度的方法。通过开发的DEM程序-SSP2D,进行了三种数值测试,以展示其在模拟凹形粒子的动态和伪静态行为的能力和效率。

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