Shape analysis of sand particles based on Fourier descriptors

被引:0
作者
Tianxi Yan
Yahong Liu
Dong Wei
Xiaofan Sun
Qing Liu
机构
[1] China University of Geosciences,School of Water Resources and Environment
[2] China University of Geosciences,School of Earth Sciences and Resources
[3] Institute of Hydrogeology and Engineering Geology of Hubei Province,undefined
[4] Seventh Geological Brigade of Hubei Geological Bureau,undefined
[5] Yichang Geological Environment Monitoring Station,undefined
来源
Environmental Science and Pollution Research | 2023年 / 30卷
关键词
Sand particle; Shape analysis; Fourier descriptors; Reconstruction; Correlation coefficients;
D O I
暂无
中图分类号
学科分类号
摘要
Particle shape greatly influences the mechanical behavior of geotechnical materials. For a specific material, for example, a sand particle, it remains an open question how to provide a comprehensive quantitative information about the particle shape. While Fourier descriptors, as a sequence of good shape descriptors, are well addressed in the literature, approaches mainly aim at pattern recognition in the field of computer vision. In this paper, Fourier descriptors are used to analyze the particle shape of geotechnical material. A total of 600 sand particles were collected from the Hutuo River, the main water resource of Shijiazhuang County, Hebei Province. Several shape descriptors, elongation, circularity, convexity, and roughness, are identified and further analyzed statistically. The Andrews plot of Fourier descriptors can be used to discriminate the sand samples. And it is convenient to use Fourier descriptors to reconstruct sand particles. A functional relationship between Fourier descriptors Dk and k, the frequency of the kth components is proved to exist. Moreover, the relationship between shape descriptors and Fourier descriptors is investigated in a correlation analysis. The elongation has a moderate correlation with Fourier descriptors of D1.
引用
收藏
页码:62803 / 62814
页数:11
相关论文
共 50 条
[1]  
Altuhafi FN(2011)Changes to particle characteristics associated with the compression of sands[J] Géotechnique 61 459-471
[2]  
Coop MR(2008)Particle shape: a review and new methods of characterization and classification[J] Sedimentology 55 31-63
[3]  
Blott SJ(2022)Numerical simulation of landslide-generated waves using a SPH-DEM coupling model[J] Ocean Eng 258 111826-591
[4]  
Pye K(2021)Numerical simulations of the soil–rock mixture mechanical properties considering the influence of rock block proportions by pfc2d[J] Materials 14 5442-ECV 4-9
[5]  
Bu S(2007)Shear strength, interparticle locking, and dilatancy of granular materials[J] Can Geotech J 44 579-638
[6]  
Li D(2002)Influence of grain characteristics on the friction of granular shear zones[J] J Geophys Res: Solid Earth 107 ECV 4-1-108
[7]  
Chen S(1977)A hypothesis for morphological characterization of particle shape and physiochemical properties[J] Powder TechnoL 16 233-96
[8]  
Gao W(2012)Fourier–Voronoi-based generation of realistic samples for discrete modelling of granular materials[J] Granular Matter 14 621-265
[9]  
Yang H(2013)Generating realistic 3D sand particles using Fourier descriptors[J] Granular Matter 15 95-17
[10]  
Wang L(2016)Phase preserving Fourier descriptor for shape-based image retrieval[J] Sig Process: Image Commun 40 82-14