Geogrid-reinforced coral sand (GRCS) effectively enhances the strength and stability of marine geo-structures in island and coastal areas. The complex interaction and underlying mechanism of the geogrid-coral sand interface potentially determine the mechanical properties of the GRCS. In this study, large-scale interfacial shear tests were carried out to investigate the mechanical behaviors of geogrid-coral sand interfaces under the coupled influence of grain size, geogrid properties, and stress level. Comparisons with siliceous sand indicate that the mechanical properties of the geogrid-coral sand interface are excellent but suffer from more complex influences originating from particle properties. The interfacial friction angle is more sensitive to grain size, whereas the pseudo cohesion is more sensitive to aperture properties. The shear interface shows a general evolution trend of “contraction-dilation-contraction”, with the maximum and final dilation becoming more prominent as the aperture size and stress level decrease. The increase in grain size, vertical stress and geogrid apertures induces a thicker interface with more particle crushing. Given the microscopic geogrid-coral sand interaction, the force characteristics of the aperture are further analyzed, and an equivalent additional stress calculation method is developed to quantitatively characterize the effects of grain size, geogrid properties, and stress level.
Article navigation
1 August 2025
Research Article|
December 10 2024
Investigation of shear mechanical behaviors of geogrid-coral sand interfaces
Z. Luo;
Z. Luo
1 PhD Candidate, College of Civil Engineering,
Chongqing University
, Chongqing, China
; Department of Civil, Environmental and Mining Engineering, School of Engineering, The University of Western Australia, Perth, Australia
, E-mail: 20211601070@cqu.edu.cn
Search for other works by this author on:
X. Ding;
2 Professor, College of Civil Engineering,
Chongqing University
, Chongqing, China
Corresponding author X. Ding (dxmhhu@163.com)
Search for other works by this author on:
Q. Ou;
Q. Ou
3 Assistant Research Fellow, College of Civil Engineering,
Chongqing University
, Chongqing, China
, E-mail: ouq126@cqu.edu.cn
Search for other works by this author on:
L. Zhang;
L. Zhang
4 PhD Candidate, College of Civil Engineering,
Chongqing University
, Chongqing, China
, E-mail: zlz403930430@163.com
Search for other works by this author on:
T. Zhang
T. Zhang
5 Principal Geotechnical Engineer,
AGEO Engineering Service Pty Ltd
, Perth, Australia
, E-mail: ting.zhang@ageo.com.au
Search for other works by this author on:
Corresponding author X. Ding (dxmhhu@163.com)
Declaration of Competing Interest The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.
Publisher: Emerald Publishing
Received:
August 15 2024
Accepted:
October 29 2024
Online ISSN: 1751-7613
Print ISSN: 1072-6349
© 2025 Emerald Publishing Limited
2025
Emerald Publishing Limited
Licensed re-use rights only
Geosynthetics International (2025) 32 (5): 625–641.
Article history
Received:
August 15 2024
Accepted:
October 29 2024
Citation
Luo Z, Ding X, Ou Q, Zhang L, Zhang T (2025), "Investigation of shear mechanical behaviors of geogrid-coral sand interfaces". Geosynthetics International, Vol. 32 No. 5 pp. 625–641, doi: https://doi.org/10.1680/jgein.24.00103
Download citation file:
New and popular articles
Suggested Reading
Benefits of geosynthetic reinforcement in widening of embankments subjected to foundation differential settlement
Geosynthetics International (October,2014)
Study on the mechanical properties and particle breakage of geogrid-reinforced tunnel spoil
Geosynthetics International (February,2025)
Time-dependent stress–strain behaviour due to viscous properties of geogrid reinforcement
Geosynthetics International (December,2003)
A rapid stress calculation method for short flexspline harmonic drive
Engineering Computations (June,2019)
Geogrid and burial depth effects on buried pipes near erosion voids under cyclic loading
Geosynthetics International (May,2026)
Related Chapters
Paved roads
Handbook of Geosynthetic Engineering: Geosynthetics and their applications
Slopes – stabilisation
Handbook of Geosynthetic Engineering: Geosynthetics and their applications
Embankments
Handbook of Geosynthetic Engineering: Geosynthetics and their applications
Recommended for you
These recommendations are informed by your reading behaviors and indicated interests.
