Technical Papers
Nov 4, 2022

Support Pressure for Stability of Horseshoe-Shaped Tunnels in Undrained Clay Using Lower-Bound Finite-Element Limit Analysis

Publication: International Journal of Geomechanics
Volume 23, Issue 1

Abstract

In this paper, the peripheral stability of a horseshoe-shaped tunnel in undrained clay with linearly increasing and directionally dependent strength is studied using the lower-bound theorem of plastic analysis coupled with finite-element formulation and second-order cone programming. The present analysis computes required supporting pressure for a tunnel constructed in isotropic/anisotropic normally consolidated (NC)/lightly overconsolidated (LOC) clay with linearly varying undrained strength across the depth, and isotropic/anisotropic heavily overconsolidated (HOC) clay whose undrained strength remains constant throughout the depth. Dimensionless stability charts have been produced for expressing the undrained stability of horseshoe tunnels in terms of anisotropic and heterogeneous parameters, tunnel cover depth, and normalized overburden pressure. The combined influence of these parameters on the peripheral stability of tunnels and associated failure mechanisms have also been examined and discussed. Further, a few analyses were done to examine the advantage of a horseshoe-shaped cross section in comparison with a circular cross section.

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Published In

Go to International Journal of Geomechanics
International Journal of Geomechanics
Volume 23Issue 1January 2023

History

Received: Dec 2, 2021
Accepted: Jul 29, 2022
Published online: Nov 4, 2022
Published in print: Jan 1, 2023
Discussion open until: Apr 4, 2023

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Bibhash Kumar [email protected]
Assistant Professor, Dept. of Civil Engineering, National Institute of Technology, Uttarakhand 246174, India. Email: [email protected]
Jagdish Prasad Sahoo [email protected]
Associate Professor, Dept. of Civil Engineering, Indian Institute of Technology, Kanpur 208016, India (corresponding author). Emails: [email protected]; [email protected]

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