Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Bubble-enhanced quadrilateral finite element formulation for nonlinear analysis of geotechnical problems
We investigate a new numerical procedure based on a bubble-enriched finite element formulation in combination with the implicit backward Euler scheme for nonlinear analysis of strip footings and stability of slopes. The soil body is modeled as a perfect plastic Mohr–Coulomb material. The displacement field is approximated by a 4-node quadrilateral element discretization enhanced with bubble modes. Collapse loads and failure mechanisms in cohesive frictional soil are determined by solving a few Newton–Raphson iterations. Numerical results of the present approach are verified by both analytical solutions and other numerical solutions available in the literature. Keywords: Material nonlinear analysis, Backward Euler scheme, Bearing capacity, Slope stability, Bubble functions, Finite elements
Bubble-enhanced quadrilateral finite element formulation for nonlinear analysis of geotechnical problems
We investigate a new numerical procedure based on a bubble-enriched finite element formulation in combination with the implicit backward Euler scheme for nonlinear analysis of strip footings and stability of slopes. The soil body is modeled as a perfect plastic Mohr–Coulomb material. The displacement field is approximated by a 4-node quadrilateral element discretization enhanced with bubble modes. Collapse loads and failure mechanisms in cohesive frictional soil are determined by solving a few Newton–Raphson iterations. Numerical results of the present approach are verified by both analytical solutions and other numerical solutions available in the literature. Keywords: Material nonlinear analysis, Backward Euler scheme, Bearing capacity, Slope stability, Bubble functions, Finite elements
Bubble-enhanced quadrilateral finite element formulation for nonlinear analysis of geotechnical problems
T. Vu-Hoang (Autor:in) / T. Vo-Minh (Autor:in) / H. Nguyen-Xuan (Autor:in)
2018
Aufsatz (Zeitschrift)
Elektronische Ressource
Unbekannt
Metadata by DOAJ is licensed under CC BY-SA 1.0
A Cubic Strain Quadrilateral Finite Element
British Library Online Contents | 1996
|Finite element analysis of saturated, strain softening geotechnical problems
British Library Conference Proceedings | 2001
|Automatic generation of quadrilateral finite element meshes
British Library Online Contents | 1998
|The Finite Element Method on Quadrilateral Meshes
British Library Conference Proceedings | 2004
|Genetic algorithms in probabilistic finite element analysis of geotechnical problems
Online Contents | 2005
|