Title of article :
A node-based smoothed finite-element method for stability analysis of dual square tunnels in cohesive-frictional soils
Author/Authors :
Vo-Minh Thien نويسنده PhD Student , Chau-Ngoc An نويسنده Associate Professor , Nguyen-Minh Tam نويسنده Assistant Professor , Nguyen-Chanh Hoang نويسنده PhD student
Pages :
17
From page :
1105
Abstract :
This paper presents an upper-bound limit analysis procedure using the nodebased Smoothed Finite-Element Method (NS-FEM) and Second-Order Cone Programming (SOCP) to evaluate the stability of dual square tunnels in cohesive-frictional soils subjected to surcharge loading. The displacement eld of the tunnel problems is approximated using NS-FEM triangular elements (NS-FEM-T3). Next, commercial software Mosek is employed to deal with optimization problems, which are formulated as second-order cone. Collapse loads and failure mechanisms of dual square tunnels are performed by solving the optimization problems with a series of size-to-depth ratios and soil properties. For dual square tunnels, the distance between centers of two parallel tunnels is the major parameter used to determine the stability. In this study, surcharge loading is applied to the ground surface, and drained conditions are considered. Numerical results are veri ed with those available to demonstrate the accuracy of the proposed method.
Journal title :
Astroparticle Physics
Serial Year :
2018
Record number :
2410281
Link To Document :
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