The conventional vacuum preloading method using prefabricated vertical drains (PVDs) suffers from vacuum pressure attenuation with depth. To address this limitation, this paper proposes a novel stacked PVD (S-PVD) vacuum preloading method that enhances vacuum pressure transmission and consolidation efficiency. Comparative laboratory tests were conducted on conventional PVD, reverse prefabricated vertical drain (R-PVD), and S-PVD to evaluate the reinforcement effectiveness, with particle migration patterns during the reinforcement process being systematically analyzed through particle image velocimetry (PIV) techniques. The test results indicate that the S-PVD vacuum preloading method represents a rapid and effective enhancement. Compared to the conventional PVD method, S-PVD achieved significant improvements in various indicators, such as water discharge and surface settlement, within 75% of the reinforcement period. Furthermore, the soil reinforced with S-PVD exhibits superior uniformity, with a 32.37% improvement in vane shear strength uniformity between the top and bottom of the drainage board. For the soil at the bottom of the drainage board, pore water pressure dissipation increases by 97.17%, and the radius of the influence area expands by 84.59%. This demonstrates that S-PVD effectively facilitates the transmission of vacuum pressure into bottom soil layers, thereby enhancing reinforcement efficacy and enabling synchronous and efficient consolidation at various depths.
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16 April 2026
Technical Paper|
August 22 2025
Reinforcement mechanism and effect of S-PVD vacuum preloading method for dredged sludge
H. Lei;
H. Lei
1Department of Civil Engineering,
Tianjin University
, Tianjin, China
; Department of Civil Engineering and Architecture, Guangxi University, Guangxi, China; Key Laboratory of Coast Civil Structure Safety of the Ministry of Education, Tianjin University, Tianjin, China; Key Laboratory of Comprehensive Simulation of Engineering Earthquake and Urban-Rural Seismic Resilience, CEA, Tianjin, China, E-mail: leihuayang74@163.com
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S. Feng;
3Department of Civil Engineering,
Tianjin University
, Tianjin, China
; Key Laboratory of Coast Civil Structure Safety of the Ministry of Education, Tianjin University, Tianjin, China; Key Laboratory of Comprehensive Simulation of Engineering Earthquake and Urban-Rural Seismic Resilience, CEA, Tianjin, ChinaCorresponding author S. Feng (shuangxi@tju.edu.cn)
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S. Yu
S. Yu
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Corresponding author S. Feng (shuangxi@tju.edu.cn)
Publisher: Emerald Publishing
Received:
February 20 2025
Accepted:
July 16 2025
Online ISSN: 1751-7613
Print ISSN: 1072-6349
Funding
Funding Group:
- Award Group:
- Funder(s): National Natural Science Foundation of China
- Award Id(s): 52108336
- Funder(s):
- Award Group:
- Funder(s): Entrusted project by the enterprise: China Railway 20th Bureau Group Fourth Engineering Co., Ltd
- Award Id(s): QTHT-20231105-0003
- Funder(s):
- Funding Statement(s): The authors acknowledge the National Natural Science Foundation of China (Grant No. 52108336), and the Entrusted project by the enterprise: China Railway 20th Bureau Group Fourth Engineering Co., Ltd (Grant No. QTHT-20231105-0003) for their support.
© 2025 Emerald Publishing Limited
2025
Emerald Publishing Limited
Licensed re-use rights only
Geosynthetics International (2026) 33 (2): 238–255.
Article history
Received:
February 20 2025
Accepted:
July 16 2025
Citation
Lei H, Li J, Feng S, Bao Y, Zhang G, Yu S (2026), "Reinforcement mechanism and effect of S-PVD vacuum preloading method for dredged sludge". Geosynthetics International, Vol. 33 No. 2 pp. 238–255, doi: https://doi.org/10.1680/jgein.25.00028
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