Permeability of Uniformly Graded 3D Printed Granular Media

被引:22
作者
Wei, Deheng [1 ]
Wang, Zhongzheng [1 ,2 ]
Pereira, Jean-Michel [2 ]
Gan, Yixiang [1 ]
机构
[1] Univ Sydney, Sch Civil Engn, Sydney, NSW, Australia
[2] Univ Gustave Eiffel, Navier, CNRS, Ecole Ponts, Marne La Vallee, France
关键词
fractal dimension; model prediction; particle shapes; relative roughness; water permeability; SATURATED HYDRAULIC CONDUCTIVITY; SHAPE; SCALE; SEDIMENTATION; COALESCENCE; PERMEATION; PARTICLES; FRACTURES; STABILITY; TRANSPORT;
D O I
10.1029/2020GL090728
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
The present work explores water permeability of uniformly graded irregular grains using 3D printing with controlled shapes and fractal morphological features at low Reynold's number for viscous flow. From large amount of real 3D granular morphological data, a scaling law, in terms of fractal dimension, is found to be followed. With this universal law, sand grains with controlled fractal morphological features are generated using Spherical Harmonics, and then created using 3D printing technique for water permeability tests. A modified Kozeny-Carman equation is proposed through more accurate determination of specific area, as a function of relative roughness and fractal dimension, than approximation using the volume-equivalent sphere. By isolating the contributions from specific area, the shape coefficient is found to be insensitive to particle morphology. Through benchmarking the model prediction against experiments from both this work and past literature, we demonstrate the validity and wide applicability of the modified Kozeny-Carman equation.
引用
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页数:12
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