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A new Approach for Modeling the Normal Contact within Granular Assemblies through the Discrete Element Method

机译:一种新方法,用于通过离散元素法对颗粒组件中的正常接触建模

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For the simulation of dense granular systems the Discrete Element Method based on a soft-sphere approach is commonly used. In such simulations collisions between particles take a finite time. The equations of motion are applied for each particle and solved numerically. Therefore models for the forces acting between particles in contact need to be specified. In this paper the focus is set on normal contacts. Based on macroscopic accessible parameters like coefficient of restitution, collision time, force, displacement and displacement rate a wide range of commonly used force schemes are reviewed. Results obtained from these commonly used models are compared to experimental data. Due to obvious limitations extensions are presented. The new extended models are compared to experimental data and their accuracy is discussed.
机译:对于致密粒度的模拟,通常使用基于软球法的离散元件方法。在这种模拟中,粒子之间的碰撞需要有限的时间。对每个颗粒施加运动方程并在数值上进行解决。因此,需要指定用作粒子之间的颗粒之间的力的模型。在本文中,重点是正常触点。基于宏观的可访问参数,如恢复系数,碰撞时间,力,位移和位移率多种常用的力方案进行了综述。将这些常用模型获得的结果与实验数据进行比较。由于提出了明显的限制延迟。将新的扩展模型与实验数据进行比较,并且讨论了它们的准确性。

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