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Magnetically controlled ballistic deposition. A model of polydisperse granular packing

机译:磁控弹道沉积。多分散颗粒填料的模型

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摘要

The flow and deposition of polydisperse granular materials is simulated through the magnetic diffusion limited aggregation (MDLA) model. The random walk undergone by an entity in the MDLA model is modified such that the trajectories are ballistic in nature, leading to a magnetically controlled ballistic deposition (MBD) model. This allows to obtain important ingredients about a difficult problem that of the nonequilibrium segregation of polydisperse sandpiles and heterogeneous adsorption of a binary distribution of particles which can interact with each other and with an external field. Our detailed results from many simulations of MBD clusters on a two-dimensional triangular lattice above a flat surface in a vertical finite size box for binary systems indicates intriguing variations of the density, "magnetization", types of clusters and fractal dimensions. We derive the field and grain interaction-dependent susceptibility and compressibility. We deduce a completely new phase diagram for binary granular piles and discuss its complexity inherent to different grain competition and cluster growth probabilities. (C) 2003 Elsevier B.V. All rights reserved.
机译:通过磁扩散限制聚集(MDLA)模型模拟​​了多分散颗粒材料的流动和沉积。修改了MDLA模型中实体所经历的随机游走,以使轨迹本质上是弹道的,从而导致了磁控弹道沉积(MBD)模型。这允许获得关于一个难题的重要成分,该难题是多分散沙堆的不平衡分离和颗粒的二元分布的异质吸附,所述颗粒可以彼此相互作用并且与外部场相互作用。在二进制有限的垂直有限尺寸框中,在平面上方的二维三角形格子上的MBD簇的许多模拟中,我们得到的详细结果表明,密度,“磁化强度”,簇的类型和分形维数都令人着迷。我们得出了与田间和谷物相互作用相关的敏感性和可压缩性。我们为二元颗粒堆推导出了一个全新的相图,并讨论了不同颗粒竞争和簇生长概率所固有的复杂性。 (C)2003 Elsevier B.V.保留所有权利。

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    Trojan, K.; Ausloos, Marcel;

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  • 年度 2003
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