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Exponential and power law distribution of mass clusters in a (magnetic-like) deposition model of elongated grains in 2D piles

机译:在二维桩中拉长晶粒的(类磁)沉积模型中质量簇的指数和幂律分布

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摘要

A generalized magnetically controlled ballistic rain-like deposition (MBD) model of granular piles has been numerically investigated in 2D. The grains are taken to be elongated disks whence characterized by a two-state scalar degree of freedom, called "nip", their interaction being described through a Hamiltonian. The results are discussed in order to search for the effect of nip flip (or grain rotation from vertical to horizontal and conversely) probability in building a granular pile. The characteristics of creation of + (or -) nip's clusters and clusters of holes (missing nips) are analyzed. Two different cluster-mass regimes have been identified, through the cluster-mass distribution function which can be exponential or have a power law form depending on whether the nip flip (or grain rotation) probability is large or small. Analytical forms of the exponent are empirically found in terms of the Hamiltonian parameters.
机译:在二维中对粒状桩的广义磁控弹道雨状沉积(MBD)模型进行了数值研究。晶粒被认为是细长的圆盘,其特征在于称为“辊隙”的两态标量自由度,它们的相互作用通过哈密顿量来描述。讨论了结果,以寻找在构建粒状桩时辊隙翻转(或谷物从垂直向水平旋转,反之亦然)概率的影响。分析了+(或-)压区簇和孔簇(缺失压区)的创建特征。通过簇质量分布函数,已经确定了两种不同的簇质量状态,该函数可以是指数变化的,也可以取决于压区翻转(或晶粒旋转)概率是大还是小而具有幂律形式。根据哈密顿参数凭经验找到指数的分析形式。

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