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Article

Analysis and Application of Critical Pressure Prediction Model for Surface Leakage of Underwater Shallow Buried Jacking-Pipe Grouting

1
Anhui Province Key Laboratory of Building Structure and Underground Engineering, Anhui Jianzhu University, Hefei 230601, China
2
First Engineering Co., Ltd. of CTCE Group, Hefei 230041, China
3
Chengji Railway Engineering Technology Co., Ltd., Hefei 230011, China
*
Author to whom correspondence should be addressed.
Buildings 2025, 15(13), 2359; https://doi.org/10.3390/buildings15132359
Submission received: 15 June 2025 / Revised: 1 July 2025 / Accepted: 3 July 2025 / Published: 5 July 2025
(This article belongs to the Section Building Structures)

Abstract

Jacking-pipe construction has the advantages of high mechanization, low environmental impact and fast construction speed. It is widely used in the project of underground pipeline under river. However, jacking-pipe grouting under shallow burial conditions is prone to cause surface bubbling problems. Based on the jacking-pipe project of Meichong Lake in Changfeng County, Hefei, this paper discussed the mechanism of grouting surface leakage, and defined the relationship between the critical pressure of jacking-pipe grouting and the ultimate pressure of shear damage of mud jacket. Mechanical model of surface leakage from shallow buried jacking-pipe grouting was established. A general mathematical expression for the grouting critical pressure was derived and a sensitivity analysis was performed. A numerical model was established based on the background engineering, and multiple sets of grouting pressure conditions for simulation and analysis were set up. The results showed that the cohesive force c, the angle of internal friction φ, and the overburden thickness hs were all approximately linearly and positively correlated with the critical pressure of grouting. When the grouting pressure was less than 197.54 kPa the surface settlement increased. When this value was exceeded the surface displacement changed from settlement to uplift and the risk of slurry bubbling increased significantly. The theoretical calculation matched the value of grouting critical pressure from numerical simulation. The actual grouting pressure in the project was lower than the theoretical grouting critical pressure value and no slurry bubbling occurred during construction, which had verified the reliability of the theoretical model. This study can provide theoretical basis and investigation ideas for the setting of reasonable grouting pressure in similar projects.
Keywords: permeable stratum; jacking-pipe grouting; critical pressure; jacking-pipe slurry permeable stratum; jacking-pipe grouting; critical pressure; jacking-pipe slurry

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MDPI and ACS Style

Zhang, Z.; He, Y.; Li, X.; Li, X.; Wei, L.; Chen, F. Analysis and Application of Critical Pressure Prediction Model for Surface Leakage of Underwater Shallow Buried Jacking-Pipe Grouting. Buildings 2025, 15, 2359. https://doi.org/10.3390/buildings15132359

AMA Style

Zhang Z, He Y, Li X, Li X, Wei L, Chen F. Analysis and Application of Critical Pressure Prediction Model for Surface Leakage of Underwater Shallow Buried Jacking-Pipe Grouting. Buildings. 2025; 15(13):2359. https://doi.org/10.3390/buildings15132359

Chicago/Turabian Style

Zhang, Ziguang, Yong He, Xiaopeng Li, Xiang Li, Lin Wei, and Feifei Chen. 2025. "Analysis and Application of Critical Pressure Prediction Model for Surface Leakage of Underwater Shallow Buried Jacking-Pipe Grouting" Buildings 15, no. 13: 2359. https://doi.org/10.3390/buildings15132359

APA Style

Zhang, Z., He, Y., Li, X., Li, X., Wei, L., & Chen, F. (2025). Analysis and Application of Critical Pressure Prediction Model for Surface Leakage of Underwater Shallow Buried Jacking-Pipe Grouting. Buildings, 15(13), 2359. https://doi.org/10.3390/buildings15132359

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