The effect of particle shape on the angle of repose test based calibration of discrete element models

Adrienn Bablena, N. Schrempf, I. Keppler
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Abstract

Discrete element method (DEM) is a Lagrangian description based numerical technique used for modelling the mechanical behavior of granular materials. For using the DEM model, the micromechanical parameter values used in the governing equations must be determined beforehand. This is the so-called calibration problem. In most of the cases these micromechanical parameters cannot be directly measured, their values must be systematically changed until the modeled macro behavior of the granular assembly will be the same, as the real-life behavior. In this article we propose the simplest possible calibration method, the so-called angle of repose test for application in case of agricultural crop product related problems. We examine the effect of particle shape on the value of angle of repose, ad give statistically acceptable empirical function to describe this dependence mathematically.
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基于离散元模型标定的颗粒形状对休止角试验的影响
离散元法(DEM)是一种基于拉格朗日描述的数值模拟技术,用于模拟颗粒材料的力学行为。在使用DEM模型时,必须事先确定控制方程中使用的微力学参数值。这就是所谓的校准问题。在大多数情况下,这些微观力学参数不能直接测量,它们的值必须系统地改变,直到模拟的颗粒组合的宏观行为与现实生活中的行为相同。在本文中,我们提出了一种最简单的校准方法,即所谓的休止角试验,适用于与农产品有关的问题。我们研究了粒子形状对休止角值的影响,并给出了统计上可接受的经验函数来数学地描述这种相关性。
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