Skip to the main content

Original scientific paper

https://doi.org/10.14256/JCE.4468.2025

Mechanical characteristics and parameter optimisation for extra-large deep foundation excavation at cross-transfer subway stations

Zhiquan Wang
Feng Tian
Heng Zhang
Mingliang Tao et al.


Full text: croatian pdf 5.917 Kb

page 435-448

downloads: 0

cite

Full text: english pdf 5.843 Kb

page 435-448

downloads: 0

cite


Abstract

Strict control of ground settlement and internal forces within the support structure represents a key technical challenge in the excavation of extra-large deep-foundation pits for cross-transfer metro stations. Based on the field monitoring results of the research section and fundamental geotechnical parameters of the rock mass, two-stage excavation schemes, BZL1 and BZL2, are proposed. The model was validated against the monitoring data. The evolution patterns of the ground settlement and internal forces within the support system for the two excavation schemes were analysed, and the optimal excavation scheme was selected. The results showed that the maximum error between the numerical simulation and field monitoring data of the ground settlement under the BZL1 excavation scheme was 13.84 %, indicating that the established model was reliable. When the BZL2 scheme for excavating foundation pits was employed, the peak cumulative surface settlement could be reduced by up to 56.7 %, whereas the peak axial force in the cross braces could be reduced by up to 48.14 %. The BZL2 scheme is the preferred option for excavating ultradeep large-scale foundation pits, offering superior safety and economic viability. These findings may serve as a reference for the construction of extra-large deep excavations at cross-transfer underground railway stations.

Keywords

cross-transfer; metro station; extra-large deep foundation; mechanical properties; ground subsidence

Hrčak ID:

351262

URI

https://hrcak.srce.hr/351262

Publication date:

25.9.2026.

Article data in other languages: croatian

Visits: 0 *