A novel Arcs-based discrete element modeling of arbitrary convex and concave 2D particles
This study presents a novel Arcs-based discrete element method (ArcDEM) for efficient simulation of realistic granules with arbitrary convex and concave 2D particle outlines. In the proposed ArcDEM, a series of computational geometry algorithms are first developed to identify the convex corners and...
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          | Published in | Computer methods in applied mechanics and engineering Vol. 386; p. 114071 | 
|---|---|
| Main Authors | , , , , | 
| Format | Journal Article | 
| Language | English | 
| Published | 
        Amsterdam
          Elsevier B.V
    
        01.12.2021
     Elsevier BV  | 
| Subjects | |
| Online Access | Get full text | 
| ISSN | 0045-7825 1879-2138 1879-2138  | 
| DOI | 10.1016/j.cma.2021.114071 | 
Cover
| Abstract | This study presents a novel Arcs-based discrete element method (ArcDEM) for efficient simulation of realistic granules with arbitrary convex and concave 2D particle outlines. In the proposed ArcDEM, a series of computational geometry algorithms are first developed to identify the convex corners and concave troughs of an arbitrary-shaped particle outline. Then, the circle-growing technique and the least squares method are combined to establish the Arcs-based particle that can represent the whole particle outline with multi-connected inward and outward arcs. Next, a new algorithm for efficient overlapping detection and precise contact resolution is developed for the Arcs-based particles. Finally, the ArcDEM is developed as a simulation tool with several implemented contact force laws and particle motions solved by an explicit time integration. To validate the feasibility and efficiency of the proposed ArcDEM, several numerical examples are performed, including (1) random allocation of non-overlapping irregular particles, (2) random packing of super-elliptical particles of different aspect ratios and blockiness, and (3) simulation of repose angle and biaxial compression tests of realistic rock particles with various roundness. The developed ArcDEM tool shows a powerful capability of numerically investigating the macro- and micromechanical properties of realistic convex and/or concave granular particles.
•An ArcDEM framework is proposed for discrete modeling of arbitrary-shaped realistic particles.•An arcs-based algorithm is developed to reproduce concave and convex particle outlines.•Efficient contact detection and analytical contact resolution are implemented in ArcDEM.•Computational efficiency and validity are demonstrated through numerical examples. | 
    
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| AbstractList | This study presents a novel Arcs-based discrete element method (ArcDEM) for efficient simulation of realistic granules with arbitrary convex and concave 2D particle outlines. In the proposed ArcDEM, a series of computational geometry algorithms are first developed to identify the convex corners and concave troughs of an arbitrary-shaped particle outline. Then, the circle-growing technique and the least squares method are combined to establish the Arcs-based particle that can represent the whole particle outline with multi-connected inward and outward arcs. Next, a new algorithm for efficient overlapping detection and precise contact resolution is developed for the Arcs-based particles. Finally, the ArcDEM is developed as a simulation tool with several implemented contact force laws and particle motions solved by an explicit time integration. To validate the feasibility and efficiency of the proposed ArcDEM, several numerical examples are performed, including (1) random allocation of non-overlapping irregular particles, (2) random packing of super-elliptical particles of different aspect ratios and blockiness, and (3) simulation of repose angle and biaxial compression tests of realistic rock particles with various roundness. The developed ArcDEM tool shows a powerful capability of numerically investigating the macro- and micromechanical properties of realistic convex and/or concave granular particles. This study presents a novel Arcs-based discrete element method (ArcDEM) for efficient simulation of realistic granules with arbitrary convex and concave 2D particle outlines. In the proposed ArcDEM, a series of computational geometry algorithms are first developed to identify the convex corners and concave troughs of an arbitrary-shaped particle outline. Then, the circle-growing technique and the least squares method are combined to establish the Arcs-based particle that can represent the whole particle outline with multi-connected inward and outward arcs. Next, a new algorithm for efficient overlapping detection and precise contact resolution is developed for the Arcs-based particles. Finally, the ArcDEM is developed as a simulation tool with several implemented contact force laws and particle motions solved by an explicit time integration. To validate the feasibility and efficiency of the proposed ArcDEM, several numerical examples are performed, including (1) random allocation of non-overlapping irregular particles, (2) random packing of super-elliptical particles of different aspect ratios and blockiness, and (3) simulation of repose angle and biaxial compression tests of realistic rock particles with various roundness. The developed ArcDEM tool shows a powerful capability of numerically investigating the macro- and micromechanical properties of realistic convex and/or concave granular particles. •An ArcDEM framework is proposed for discrete modeling of arbitrary-shaped realistic particles.•An arcs-based algorithm is developed to reproduce concave and convex particle outlines.•Efficient contact detection and analytical contact resolution are implemented in ArcDEM.•Computational efficiency and validity are demonstrated through numerical examples.  | 
    
| ArticleNumber | 114071 | 
    
| Author | Wang, Xiang Yin, Zhen-Yu Su, Dong Feng, Y.T. Xiong, Hao  | 
    
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| Keywords | Concave particle Overlapping detection Particle shape Discrete element method Granular material Contact resolution  | 
    
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| Snippet | This study presents a novel Arcs-based discrete element method (ArcDEM) for efficient simulation of realistic granules with arbitrary convex and concave 2D... | 
    
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| SubjectTerms | Algorithms Angle of repose Aspect ratio Compression tests Computational geometry Concave particle Contact force Contact resolution Discrete element method Granular material Irregular particles Least squares method Overlapping detection Particle shape Roundness Simulation Time integration Two dimensional models  | 
    
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| Title | A novel Arcs-based discrete element modeling of arbitrary convex and concave 2D particles | 
    
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