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A modular, partitioned, discrete element framework for industrial grain distribution systems with rotating machinery

机译:具有旋转机械的工业晶粒分配系统的模块化,分区离散元件框架

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摘要

A modular discrete element framework is presented for large-scale simulations of industrial grain-handling systems. Our framework enables us to simulate a markedly larger number of particles than previous studies, thereby allowing for efficient and more realistic process simulations. This is achieved by partitioning the particle dynamics into distinct regimes based on their contact interactions, and integrating them using different time-steps, while exchanging phase-space data between them. The framework is illustrated using numerical experiments based on fertilizer spreader applications. The model predictions show very good qualitative and quantitative agreement with available experimental data. Valuable insights are developed regarding the role of lift vs drag forces on the particle trajectories in-flight, and on the role of geometric discretization errors for surface meshing in governing the emergent behavior of a system of particles.
机译:提出了一种模块化的离散元件框架,用于工业晶粒处理系统的大规模模拟。 我们的框架使我们能够模拟比以前的研究更大数量的粒子,从而允许有效和更现实的过程模拟。 这是通过基于它们的接触交互将粒子动力学分成不同的制度来实现,并使用不同的时间步骤对它们集成,同时在它们之间交换相空间数据。 使用基于肥料涂布器应用的数值实验说明该框架。 模型预测显示出与可用的实验数据非常良好的定性和定量协议。 有关升降机VS阻力在飞行中的粒子轨迹上的作用,以及几何离散化误差在粒子的紧急行为中的作用中的作用,开发了有价值的见解。

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