DocumentCode :
2074560
Title :
Research on 3d elastoplastic numerical analysis of settlement joint of shield tunnel based on the interaction between soil and structure
Author :
Shouhe, Wu ; Zhong, Li ; Siyang, Chen
Author_Institution :
Lanzhou Municipal Eng. Constr. Group Co..Ltd., Lanzhou, China
fYear :
2011
fDate :
16-18 Dec. 2011
Firstpage :
1370
Lastpage :
1373
Abstract :
Considering the effect on uneven settlement of tunnel longitudinal stratum, a 3d elastoplastic numerical model is established for the arrangement of settlement joint and the calculation of force and deformation of tunnel longitudinal structure based on the interaction between soil and structure. In the FEM calculation model, soil material is elastoplastic, the soil constitutive model selected Mohr Coulomb, the element type of soil choose a three-dimensional solid element, the element type of segment structure use space shell element, and settlement joint use three-dimensional linear elastic spring. Calculation shows that, this calculation model is able to fully consider the impact of tunnel the uneven settlement of all factors, and may better simulate the vertical force and deformation behavior of tunnel structure in complex ground formation conditions. Research conclusion gives the vertical force and deformation of the tunnel structure under the condition of different set of settlement joint, and has an important reference value for the future design and construction of the tunnel lining structure.
Keywords :
deformation; elastoplasticity; finite element analysis; geotechnical engineering; impact (mechanical); shells (structures); soil; springs (mechanical); structural engineering; tunnels; 3d elastoplastic numerical analysis; FEM calculation model; settlement joint; shield tunnel; soil constitutive model; soil-structure interaction; space shell element; three-dimensional linear elastic spring; three-dimensional solid element; tunnel deformation; tunnel force; tunnel impact; tunnel lining structure; tunnel longitudinal structure; Deformable models; Force; Joints; Load modeling; Numerical models; Soil; Solid modeling; elastoplastic; interaction; numerical analysis; settlement joint; uneven settlement of stratum;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Transportation, Mechanical, and Electrical Engineering (TMEE), 2011 International Conference on
Conference_Location :
Changchun
Print_ISBN :
978-1-4577-1700-0
Type :
conf
DOI :
10.1109/TMEE.2011.6199461
Filename :
6199461
Link To Document :
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