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September 1, 1998Journal of Geotechnical and Geoenvironmental Engineering761 citations

Analytical Prediction for Tunneling-Induced Ground Movements in Clays

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NLNanthakumar LoganathanHPH G Poulos

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Abstract

Current design practice to predict tunneling-induced ground movements is generally based on empirical methods that are subjected to some important limitations. For a ground deformation prediction due to tunneling to be accurate, the prediction methods should account for the effect of a number of parameters, such as tunnel construction method and tunnel-driving details, tunnel depth and diameter, initial stress state, and stress-strain behavior of the soil around tunnel. In this paper, the traditional definition of the ground loss parameter is redefined as “equivalent ground loss ε parameter” with respect to gap “g” parameters and incorporated on to analytical solutions to predict the ground movements around the tunnel in clays. The applicability of these proposed analytical solutions is then checked with five case records, which encompass a range of ground conditions from very stiff to soft clays. Equivalent ground loss parameters predicted on the basis of the new approach are in good agreement with reported empirical ground loss parameters, especially for tunnels in stiff clay. The proposed new approach tends to overpredict the ground loss parameter for tunnels in soft clay, and the predicted surface settlement troughs are slightly wider than the field observations. Nevertheless, in general, the observed and predicted settlement and horizontal movements are in good agreement for tunnels in uniform clay.

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Cite This Study

Loganathan et al. (1998) studied this question.

synapsesocial.com/papers/69d723f9424c1fc5df563aechttps://doi.org/10.1061/(asce)1090-0241(1998)124:9(846)
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Strain field around a tunnel in stiff soil1983 · 13 citations
  2. 2Analysis of undrained soil deformation due to ground loss1987 · 670 citations
  3. 3Ground movement around shallow tunnels in soft clay1982 · 54 citations
  4. 4Predicting Settlement due to Tunnelling in Clay1984 · 25 citations
  5. 5Surface settlements due to deformation of a tunnel in an elastic half plane1996 · 429 citations