As key characteristics of back-to-back MSE walls, the width to height ratio and reinforcement arrangement have important influences on the internal stability and failure modes. This paper presents a numerical study on the stability of back-to-back MSE walls with unconnected, connected, and separated reinforcements, to investigate the influence of reinforcement arrangements. Results indicate that the unconnected reinforcement arrangement is more effective in reducing facing displacements for narrower back-to-back MSE walls, while the connected reinforcement arrangement is more effective for wider back-to-back MSE walls. The unconnected reinforcement arrangement is suitable for relatively narrow back-to-back MSE walls to reduce the required reinforcement tensile strength. The width to height ratio has an important influence on the stability of back-to-back MSE walls with unconnected and separated reinforcements. However, the width to height ratio has a minor influence on the stability of back-to-back MSE walls with connected reinforcements. For the back-to-back MSE walls with unconnected reinforcements, the failure mode at small width to height ratios is reinforcement pullout failure, and transitions to external sliding as the width to height ratio increases. The failure modes are reinforcement connection failure and external sliding for back-to-back MSE walls with connected and separated reinforcements, respectively.
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Research Article|
May 08 2026
Optimal reinforcement arrangement for the stability of back-to-back MSE walls
M. Ji
;
M. Ji
2School of Civil Engineering,
Henan Polytechnic University
, Jiaozuo, China
, E-mail: mingchangji@hpu.edu.cn
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Z. Wang;
Z. Wang
3School of Civil Engineering,
Shijiazhuang Tiedao University
, Shijiazhuang, China
, E-mail: zwang@stdu.edu.cn
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G. Yang;
G. Yang
4School of Civil Engineering,
Shijiazhuang Tiedao University
, Shijiazhuang, China
, E-mail: yanggq@stdu.edu.cn
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Y. Zheng
5School of Civil Engineering,
Wuhan University
, Wuhan, China
; Key Laboratory of Rock Mechanics in Hydraulic Structural Engineering of the Ministry of Education, Wuhan University, Wuhan ChinaCorresponding author Y. Zheng (yzheng@whu.edu.cn)
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Corresponding author Y. Zheng (yzheng@whu.edu.cn)
DECLARATION OF COMPETING INTERESTS 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:
December 22 2025
Accepted:
April 07 2026
Online ISSN: 1751-7613
Print ISSN: 1072-6349
Funding
Funding Group:
- Award Group:
- Funder(s): Natural Science Foundation of Hubei Province
- Award Id(s): JCZRQNB202600439
- Funder(s):
- Award Group:
- Funder(s): National Natural Science Foundation of China
- Award Id(s): 52478358,52078392
- Funder(s):
- Award Group:
- Funder(s): State Key Laboratory of Mechanical Behavior and System Safety of Traffic Engineering Structures of Shijiazhuang Tiedao University
- Award Id(s): KF2020-04
- Funder(s):
- Funding Statement(s): This research work is supported by the Natural Science Foundation of Hubei Province (Grant No. JCZRQNB202600439) and National Natural Science Foundation of China (Grant No. 52478358 and No. 52078392). This research is also sponsored by Grant No. KF2020-04 from the State Key Laboratory of Mechanical Behavior and System Safety of Traffic Engineering Structures of Shijiazhuang Tiedao University. The authors appreciate the financial support.
© 2026 Emerald Publishing Limited
2026
Emerald Publishing Limited
Licensed re-use rights only
Geosynthetics International 1–13.
Article history
Received:
December 22 2025
Accepted:
April 07 2026
Citation
Li F, Ji M, Wang Z, Yang G, Zheng Y (2026;), "Optimal reinforcement arrangement for the stability of back-to-back MSE walls". Geosynthetics International, Vol. ahead-of-print No. ahead-of-print. https://doi.org/10.1680/jgein.25.00231
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