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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >An in-depth comparative study of three-dimensional angularity indices of general-shape particles based on spherical harmonic reconstruction
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An in-depth comparative study of three-dimensional angularity indices of general-shape particles based on spherical harmonic reconstruction

机译:基于球面谐波重建的全形颗粒三维角度指标的深入对比研究

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An in-depth comparative study is conducted on four three-dimensional (3D) angularity indices, namely, the radius-based angularity index (AI(r)), gradient-based angularity index (AI(g)), deviation angle-based angularity index (AI(d)), and Gaussian curvature-based angularity index (AI(G)). An innovative modification is carried out to ensure that all the indices equal zero for spheres and ellipsoids. Each AI is evaluated on particle surfaces reconstructed through spherical harmonic analyses with regular polyhedral meshes of different sizes. This comprehensive comparative study revealed that AIg and AIG better reflect the local morphological characteristics of the particles than AIr and AId. To obtain a convergent value of the overall AI of the particles, a relatively coarse mesh is sufficient for estimating AIr and AId, whereas a fine mesh is required to estimate AIG and AIg. Among the four indices, only AIG and AIg are well correlated, and their relationship can be described by a power function. (C) 2019 Elsevier B.V. All rights reserved.
机译:深入的比较研究在四个三维(3D)角度指数上进行,即基于半径的角度指数(AI(R)),基于梯度的角度指数(AI(G)),基于偏差角度角度指数(AI(D))和基于高斯曲率的角度指数(AI(G))。进行创新的修改,以确保所有索引等于球体和椭圆体等于零。每个AI在通过具有不同尺寸的常规多面体网格重建的球面谐波分析的粒子表面上进行评估。这种综合对比研究表明,AIG和AIG更好地反映了颗粒的局部形态特征而不是空气和辅助。为了获得颗粒的总体Ai的会聚值,相对粗的网格足以估计空气和助剂,而细网是需要估计AIG和AIG的细网。在四个指标中,只有AIG和AIG均匀相关,并且它们的关系可以通过功率函数来描述。 (c)2019年Elsevier B.V.保留所有权利。

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