This study focused on the mobilisation and degradation of three-dimensional soil arching by adopting a matrix trapdoor test device with 144 individually and electrically controlled movable plates to simulate unreinforced piled embankments at different coverage ratios and fill heights. Movable and fixed plates simulated subsoil settlement and pile behaviour, respectively. The results show that the vertical load on the piles increased rapidly during subsoil settlement due to the mobilisation of soil arching, and stress concentration occurred on the edges of the piles. Soil arching on the strip of the subsoil between adjacent piles was more mobilised than on the central subsoil zone between adjacent four piles. Increase of the fill height increased the ratio of the vertical stress on the piles to the overburden stress. Increase of the pile coverage ratio reduced the ratio of the vertical stress on the piles to the overburden stress and the degradation rate of soil arching. The ground reaction curve showed two segments of stress recovery at a coverage ratio ≤25% due to the asynchronous development of soil arching between side and central subsoils. The Concentric Arches model showed better agreement with the average measured vertical stress on the subsoil at the maximum soil arching state than other analytical models.
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Research Article|
August 14 2026
Investigation of soil arching evolution in piled embankments with three-dimensional trapdoor tests
Rui Rui;
Rui Rui
*School of Civil Engineering and Architecture,
Wuhan University of Technology
, Wuhan, P. R. China
; Sanya Science and Education Innovation Park, Wuhan University of Technology, Sanya, P. R. China
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Shi-Kai He;
Shi-Kai He
†School of Civil Engineering and Architecture,
Wuhan University of Technology
, Wuhan, P. R. China
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Jie Han;
Jie Han
‡Department of Civil, Environmental, and Architectural Engineering,
The University of Kansas
, Lawrence, USA
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Ji-Fu Liu;
Ji-Fu Liu
§
Guangdong Communication Planning & Design Institute Group Co Ltd
, Guangzhou, P. R. China
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Suzanne J. M. Van Eekelen;
Suzanne J. M. Van Eekelen
‖
Deltares
, Delft, Netherlands
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Yin-Jie Peng;
Yin-Jie Peng
†School of Civil Engineering and Architecture,
Wuhan University of Technology
, Wuhan, P. R. China
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Yu-Qiu Ye
#Rayen School of Engineering,
Youngstown State University
, Youngstown, USA
; Department of Civil, Environmental, and Architectural Engineering, The University of Kansas, Lawrence, USACorresponding author Yu-Qiu Ye (yye01@ysu.edu)
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Corresponding author Yu-Qiu Ye (yye01@ysu.edu)
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:
March 22 2025
Accepted:
May 11 2026
Online ISSN: 1751-7656
Print ISSN: 0016-8505
Funding
Funding Group:
- Award Group:
- Funder(s): National Natural Science Foundation of China
- Award Id(s): 42272315
- Funder(s):
- Funding Statement(s): This work was financially supported by the National Natural Science Foundation of China (grant no. 42272315). This support is greatly appreciated.
© 2026 Emerald Publishing Limited
2026
Emerald Publishing Limited
Licensed re-use rights only
Geotechnique 1–13.
Article history
Received:
March 22 2025
Accepted:
May 11 2026
Citation
Rui R, He S, Han J, Liu J, Van Eekelen SJM, Peng Y, Ye Y (2026;), "Investigation of soil arching evolution in piled embankments with three-dimensional trapdoor tests". Geotechnique, Vol. ahead-of-print No. ahead-of-print. https://doi.org/10.1680/jgeot.25.00105
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