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February 5, 2026Geotechnics0 citationsOpen Access

Study on Creep Characteristics and Constitutive Model of Red-Bed Mudstone in Eastern Sichuan

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BLBingHai LiYCYang ChenTLT. M. Liu

Key Points

  • The aim is to analyze the creep properties and develop a constitutive model for red-bed mudstone to enhance tunnel stability.
  • Conducted uniaxial and triaxial compression tests on rock cores.
  • Performed step-loading creep tests to analyze mechanical behavior.
  • Applied the Burgers model to evaluate stress-dependent deformation.
  • Utilized the Levenberg–Marquardt algorithm for parameter derivation.
  • Derived three-dimensional creep parameters for numerical validation.
  • Identified a long-term strength of 19.2 MPa for the mudstone.
  • Demonstrated that deformation aligns with the Burgers model as stress levels change.
  • Proposed engineering recommendations to mitigate risks in fault-affected zones.

Abstract

To accurately analyze the time-dependent stability of large-span tunnels traversing the F2 fault fracture zone, this study focused on the deep-buried red-bed mudstone of the Jishan Tunnel. Rock cores were retrieved from the critical Grade V surrounding rock section (depth 370 m). Uniaxial and triaxial compression tests were conducted to determine basic mechanical parameters. Through step-loading creep tests, the creep characteristics were analyzed, and a long-term strength of 19.2 MPa was identified. Analysis revealed that the deformation aligns well with the stress-dependent Burgers model, where parameters evolve with stress level. Using the Levenberg–Marquardt algorithm, the variable model parameters were derived. Finally, three-dimensional creep parameters were obtained for numerical validation. Engineering recommendations for support timing and yielding mechanisms are proposed to mitigate rheological risks in fault-affected zones.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/6984347ff1d9ada3c1fb29b6https://doi.org/10.3390/geotechnics6010013
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