LAPSE:2023.2670v1
Published Article

LAPSE:2023.2670v1
Investigation on Creep Behavior of Aggregates of Loess by a Discrete Element Method
February 21, 2023
Abstract
In loess the aggregate is the basic structural unit, and its stability is an important factor affecting the composition, water stability and strength of loess. However, due to the difficulty of sample preparation, few scholars have done independent research on it. In this manuscript, a numerical model of aggregate is constructed by the discrete element method. Under the continuous action of certain stress, the uninterrupted development process of sample deformation with time was observed, that is, the creep of aggregate structures. The results show that the creep of aggregates is closely related to the relative movement, rotation and rearrangement of internal structural elements, and the most intuitive mesoscopic evolution of the adjustment process of structural elements is the change of contact number, namely the coordination number. The microscopic parameters and evolutionary characteristics of fabric can reveal the microscopic mechanism behind the macroscopic creep phenomenon. With the creep process, the creep stress is gradually borne by the normal contact force rather than the tangential contact force and has anisotropic characteristics. As a result of creep, the contact points of particles increase, and the interaction between aggregates changes from point contact to overlap contact. The constraint between aggregates increases, and the skeleton tends to be a more stable structure, which can bear a larger load.
In loess the aggregate is the basic structural unit, and its stability is an important factor affecting the composition, water stability and strength of loess. However, due to the difficulty of sample preparation, few scholars have done independent research on it. In this manuscript, a numerical model of aggregate is constructed by the discrete element method. Under the continuous action of certain stress, the uninterrupted development process of sample deformation with time was observed, that is, the creep of aggregate structures. The results show that the creep of aggregates is closely related to the relative movement, rotation and rearrangement of internal structural elements, and the most intuitive mesoscopic evolution of the adjustment process of structural elements is the change of contact number, namely the coordination number. The microscopic parameters and evolutionary characteristics of fabric can reveal the microscopic mechanism behind the macroscopic creep phenomenon. With the creep process, the creep stress is gradually borne by the normal contact force rather than the tangential contact force and has anisotropic characteristics. As a result of creep, the contact points of particles increase, and the interaction between aggregates changes from point contact to overlap contact. The constraint between aggregates increases, and the skeleton tends to be a more stable structure, which can bear a larger load.
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Keywords
aggregates, creep behavior, discrete element method, law of evolution, loess
Suggested Citation
Sun JQ, Li XA, Bi ML, Zhang KX, Zhang J. Investigation on Creep Behavior of Aggregates of Loess by a Discrete Element Method. (2023). LAPSE:2023.2670v1
Author Affiliations
Sun JQ: School of Geological Engineering and Geomatics, Chang’an University, Xi’an 710054, China
Li XA: School of Geological Engineering and Geomatics, Chang’an University, Xi’an 710054, China; Open Research Laboratory of Geotechnical Engineering, Ministry of Land and Resources, Xi’an 710054, China
Bi ML: Tongchuan Natural Resources Bureau, Tongchuan 727031, China
Zhang KX: Xi’an Building Materials Geological Engineering Survey Institute Co. Ltd., Xi’an 710003, China
Zhang J: School of Geological Engineering and Geomatics, Chang’an University, Xi’an 710054, China
Li XA: School of Geological Engineering and Geomatics, Chang’an University, Xi’an 710054, China; Open Research Laboratory of Geotechnical Engineering, Ministry of Land and Resources, Xi’an 710054, China
Bi ML: Tongchuan Natural Resources Bureau, Tongchuan 727031, China
Zhang KX: Xi’an Building Materials Geological Engineering Survey Institute Co. Ltd., Xi’an 710003, China
Zhang J: School of Geological Engineering and Geomatics, Chang’an University, Xi’an 710054, China
Journal Name
Processes
Volume
10
Issue
4
First Page
795
Year
2022
Publication Date
2022-04-18
ISSN
2227-9717
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PII: pr10040795, Publication Type: Journal Article
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LAPSE:2023.2670v1
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https://doi.org/10.3390/pr10040795
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Feb 21, 2023
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