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3D particle shape modelling and optimization through proper orthogonal decomposition

机译:通过适当的正交分解进行3D粒子形状建模和优化

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摘要

Based on proper orthogonal decomposition (POD), a new method is presented in order to statistically characterize arbitrary particle shapes using an optimal choice of shape functions identified on a set of 1000 digitized railway ballast particles obtained through 3D Scan. The coefficients of the POD expansion enable a description of ballast grains with varying levels of accuracy. On exploiting the knowledge of their statistical distribution we are able, implementing an appropriate multivariate kernel density estimation method, to generate irregular particles with similar morphological features. The description and generation methods are validated by comparing statistical distributions of basic characteristics: surface area, volume, average radius, elongation, flatness, and aspect ratio. Using suitable geometric descriptors defining local curvatures, we identify which surface points might be regarded as forming faces. This shows that the proposed particle generation method is well suited for irregularly shaped granular materials, as a first geometric definition step, before numerical simulations of their collective mechanical properties are carried out by a Discrete Element code dealing with polyhedral shapes. We illustrate this process with the simple case of the assembling of a granular pack from a loose configuration, by one-dimensional compression, using different levels of accuracy in the representation of grain shape.
机译:基于适当的正交分解(POD),提出了一种新方法,以便通过对通过3D扫描获得的1000个数字化铁路道ast颗粒集上确定的形状函数的最佳选择,对任意颗粒形状进行统计表征。 POD膨胀系数可以描述具有不同精度水平的压载颗粒。利用它们的统计分布知识,我们能够实施适当的多元核密度估计方法,以生成具有相似形态特征的不规则颗粒。通过比较基本特征的统计分布(表面积,体积,平均半径,伸长率,平坦度和纵横比),验证了描述和生成方法。使用定义局部曲率的合适几何描述符,我们可以确定哪些表面点可以视为成形面。这表明,提出的粒子生成方法非常适合不规则形状的粒状材料,这是第一步几何定义步骤,然后通过处理多面体形状的离散元素代码对它们的集体机械性能进行数值模拟。我们用一个简单的例子来说明这个过程,该例子是通过使用一维压缩,使用不同级别的精度来表示颗粒形状,通过一维压缩来组装散装的颗粒状包装。

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