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A combined approach for modeling particle behavior in granular impact damper using discrete element method and cellular automata

机译:基于离散元法和细胞自动机的颗粒冲击阻尼器颗粒行为建模方法

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摘要

A particle impact damper is a vibration absorber type that consists of a container attached to a primary vibrating structure. It also contains many particles that are constrained to move inside the container, whereby the damping effect can be obtained by collision between particles and the container. The discrete element method (DEM) has been developed for modeling granular systems, where the kinematics of each particle are calculated numerically using the equations of motion. However, the computational time is significant since the algorithm checks for particle contacts for all possible particle combinations. The use of a cellular automata (CA) modeling technique may provide increased computational efficiency due to the local updating of variables, and the discrete treatment of time and space. In this study, we propose a new approach combining DEM with CA for modeling a granular damper under a forced excitation. We use DEM to describe the particle motion according to the equations of motion, while CA is introduced for the particle contact checks in discrete space. We also investigate the effect of simplification in the contact force model, which allows the unit time step of numerical integration to become larger than that used in the strict model. It is shown that the suggested particle contact scanning method and the force approximation model contribute to the reduction of the computational time, and neither degenerates the calculation accuracy nor causes the numerical instability.
机译:粒子撞击阻尼器是一种减震器类型,由连接到主振动结构的容器组成。它还包含许多被约束在容器内部移动的颗粒,从而可以通过颗粒与容器之间的碰撞获得阻尼效果。已经开发出用于对颗粒系统进行建模的离散元素方法(DEM),其中使用运动方程式对每个粒子的运动学进行数值计算。但是,由于该算法检查所有可能的粒子组合的粒子接触,因此计算时间很长。由于变量的局部更新以及时间和空间的离散处理,使用元胞自动机(CA)建模技术可以提高计算效率。在这项研究中,我们提出了一种结合DEM和CA的新方法,用于在强制激励下对颗粒阻尼器进行建模。我们使用DEM根据运动方程来描述粒子运动,而引入CA则是为了离散空间中的粒子接触检查。我们还研究了简化在接触力模型中的作用,这种作用使数值积分的单位时间步长变得比严格模型中的步长大。结果表明,建议的粒子接触扫描方法和力近似模型有助于减少计算时间,既不会降低计算精度,也不会导致数值不稳定。

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