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Analysis of Time-Dependent Soil Behavior Above High-Filled Cut-and-Cover Tunnels Using Discrete Element Method

  • 17-01-2022
  • Original Paper
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Abstract

The study analyzes the time-dependent behavior of soil above high-filled cut-and-cover tunnels (HFCCTs) in China's Loess Plateau using the Discrete Element Method. It focuses on the creep characteristics of backfill soil, which significantly affect the vertical earth pressure (VEP) and structural stability of HFCCTs. The research addresses the lack of attention given to soil creep in previous studies, highlighting the importance of predicting long-term soil behavior. The Burgers model is employed to simulate soil creep, and numerical simulations are conducted to investigate VEP distribution, vertical displacement, and load transfer mechanisms. The results show that soil creep leads to significant changes in VEP and vertical displacement over time, with the VEP eventually equilibrating with geostatic stress. The study provides valuable insights into the design and maintenance of HFCCTs, emphasizing the need to consider soil creep in engineering practices.

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Title
Analysis of Time-Dependent Soil Behavior Above High-Filled Cut-and-Cover Tunnels Using Discrete Element Method
Authors
Sheng Li
Guoqiang Han
I-Hsuan Ho
Li Ma
Balasingam Muhunthan
Qicai Wang
Changdan Wang
Publication date
17-01-2022
Publisher
Springer International Publishing
Published in
Geotechnical and Geological Engineering / Issue 4/2022
Print ISSN: 0960-3182
Electronic ISSN: 1573-1529
DOI
https://doi.org/10.1007/s10706-021-02031-3
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