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Numerical experiments of microscopic mechanism of inherent anisotropy for sand based on PFC2D

ZHANG Kun-yong 1, 2, LI Wei 1, 2, LUO Xing-jun 3, CHARKLEY Nai Frederick 1, 2 · Editorial Office of Chinese Journal of Geotechnical Engineering · 2017

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Through numerical simulation based on the particle flow method, DEM numerical test samples are generated in accordance with the results of laboratory tests on standard sand. Using gravity deposition modelling of irregular sand particles, samples of biaxial test assembled by long particle units are generated. Different steps of deposition are applied during the process of generating samples in order to simulate different inherent states of samples. The loads from the horizontal and vertical directions are respectively applied to samples. The numerical experimental results show that the gravitational deposits have significant impact on the major axis orientation arrangement of particles and the average coordination number. Also, there is a change in the macroscopic stress-strain curve and mechanical parameters acquired from the results of applying loads to the samples from the horizontal and vertical directions. The tested sand samples exhibit inherent mechanical anisotropy, which is closely associated with the internal structure properties and microscopic mechanical properties of sand.

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APA 7

ZHANG Kun-yong 1, 2. L. W. 1. 2. L. X. J. 3. C. N. F. 1. 2. (2017). Numerical experiments of microscopic mechanism of inherent anisotropy for sand based on PFC2D. https://doi.org/10.11779/CJGE201703016

MLA

ZHANG Kun-yong 1, 2, LI Wei 1, 2, LUO Xing-jun 3, CHARKLEY Nai Frederick 1, 2. "Numerical experiments of microscopic mechanism of inherent anisotropy for sand based on PFC2D." 2017. https://doi.org/10.11779/CJGE201703016.

Chicago

ZHANG Kun-yong 1, 2, LI Wei 1, 2, LUO Xing-jun 3, CHARKLEY Nai Frederick 1, 2. 2017. "Numerical experiments of microscopic mechanism of inherent anisotropy for sand based on PFC2D.". https://doi.org/10.11779/CJGE201703016.

Harvard

ZHANG Kun-yong 1, 2. L. W. 1. 2. L. X. J. 3. C. N. F. 1. 2. 2017, Numerical experiments of microscopic mechanism of inherent anisotropy for sand based on PFC2D, Editorial Office of Chinese Journal of Geotechnical Engineering, available at: https://doi.org/10.11779/CJGE201703016 [Accessed 25 Jun. 2026].

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Título
Numerical experiments of microscopic mechanism of inherent anisotropy for sand based on PFC2D
Autor / colaboradores
ZHANG Kun-yong 1, 2, LI Wei 1, 2, LUO Xing-jun 3, CHARKLEY Nai Frederick 1, 2
Editorial
Editorial Office of Chinese Journal of Geotechnical Engineering
Año de publicación
2017
ISSN
1000-4548
ISSN
1000-4548
Idioma
eng

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