分层颗粒动力学

IF 2.9 3区 工程技术
Benjy Marks, Shivakumar Athani, Itai Einav
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引用次数: 0

摘要

两种最常用的方法来模拟颗粒流动的行为是离散元和连续力学模拟。这些方法集中于粒子或块状物质运动的确定性描述。与这些方法不同,本文介绍了另一种模型,该模型描述了重力作用下空隙空间的随机动力学。该模型包括在变形的颗粒介质中观察到的几个关键现象,如偏析、混合和休止角。使用空间和微观结构内部坐标对这些机制进行了异质性建模。该模型的关键方面包括它能够描述基于固体分数截止的颗粒介质的稳定和流动状态,以及颗粒尺寸对流动、离析和混合的影响。通过柱体倒塌和筒仓卸料的模拟验证了模型的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Heterarchical granular dynamics

The two most commonly used methods to model the behaviour of granular flows are discrete element and continuum mechanics simulations. These approaches concentrate on the deterministic description of particle or bulk material motion. Unlike these approaches, this paper introduces an alternative model that describes the stochastic dynamics of the void spaces under the action of gravity. The model includes several key phenomena which are observed in deforming granular media, such as segregation, mixing, and an angle of repose. These mechanisms are modelled heterarchically using both spatial and microstructural internal coordinates. Key aspects of the model include its ability to describe both stable and flowing states of granular media based on a solid fraction cut-off, and the influence of particle size on flow, segregation, and mixing. The model is validated with simulations of column collapse and silo discharge.

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来源期刊
Granular Matter
Granular Matter MATERIALS SCIENCE, MULTIDISCIPLINARY-MECHANICS
CiteScore
4.30
自引率
8.30%
发文量
95
期刊介绍: Although many phenomena observed in granular materials are still not yet fully understood, important contributions have been made to further our understanding using modern tools from statistical mechanics, micro-mechanics, and computational science. These modern tools apply to disordered systems, phase transitions, instabilities or intermittent behavior and the performance of discrete particle simulations. >> Until now, however, many of these results were only to be found scattered throughout the literature. Physicists are often unaware of the theories and results published by engineers or other fields - and vice versa. The journal Granular Matter thus serves as an interdisciplinary platform of communication among researchers of various disciplines who are involved in the basic research on granular media. It helps to establish a common language and gather articles under one single roof that up to now have been spread over many journals in a variety of fields. Notwithstanding, highly applied or technical work is beyond the scope of this journal.
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