In the upper bound approach to limit analysis of slope stability based on the rigid finite element method, the search for the minimum factor of safety can be formulated as a non-linear programming problem with equality constraints only based on a yield criterion, a flow rule, boundary conditions, and an energy-work balance equation. Because of the non-linear property of the resulting optimization problems, a non-linear mathematical programming algorithm has to be employed. In this paper, the relations between the numbers of nodes, elements, interfaces, and subsequent unknowns and constraints in the approach have been derived. It can be shown that in the large-scale problems, the unknowns are subject to a highly sparse set of equality constr...
Sequential quadratic programming (SQP) methods are a popular class of methods for nonlinearly constr...
A new convex Quadratically Constrained Quadratic Programming model (QCQP) is proposed for optimizing...
Slope stability analysis is a core issue in geotechnical engineering. This paper proposes a method o...
An upper-bound limit analysis method based on rigid finite elements has been developed recently. Num...
In this paper, the development and application of a new upper bound limit method for two- and three-...
AbstractIn many mountainous areas, landslides and slope instabilities frequently occur after heavy r...
The development and application of a new upper limit method for 2D and 3D slope stability problems a...
The traditional approach for assessing the stability of slopes is using limit equilibrium methods. R...
The development and application of a new upper limit method for 2D and 3D slope stability problems a...
Abstract: This article describes a new approach in slope stability computations. The procedure combi...
The authors present a numerical limit analysis on the slope stability in this paper using the rigid ...
Stability and deformation problems in geotechnical engineering are boundary value problems: differen...
A new approach is proposed which uses concepts of both the limit equilibrium method (LEM) and finite...
Abstract: The authors present a numerical limit analysis on the slope stability in this paper using ...
A linear failure criterion is widely used in slope stability analyses. However, the strength envelop...
Sequential quadratic programming (SQP) methods are a popular class of methods for nonlinearly constr...
A new convex Quadratically Constrained Quadratic Programming model (QCQP) is proposed for optimizing...
Slope stability analysis is a core issue in geotechnical engineering. This paper proposes a method o...
An upper-bound limit analysis method based on rigid finite elements has been developed recently. Num...
In this paper, the development and application of a new upper bound limit method for two- and three-...
AbstractIn many mountainous areas, landslides and slope instabilities frequently occur after heavy r...
The development and application of a new upper limit method for 2D and 3D slope stability problems a...
The traditional approach for assessing the stability of slopes is using limit equilibrium methods. R...
The development and application of a new upper limit method for 2D and 3D slope stability problems a...
Abstract: This article describes a new approach in slope stability computations. The procedure combi...
The authors present a numerical limit analysis on the slope stability in this paper using the rigid ...
Stability and deformation problems in geotechnical engineering are boundary value problems: differen...
A new approach is proposed which uses concepts of both the limit equilibrium method (LEM) and finite...
Abstract: The authors present a numerical limit analysis on the slope stability in this paper using ...
A linear failure criterion is widely used in slope stability analyses. However, the strength envelop...
Sequential quadratic programming (SQP) methods are a popular class of methods for nonlinearly constr...
A new convex Quadratically Constrained Quadratic Programming model (QCQP) is proposed for optimizing...
Slope stability analysis is a core issue in geotechnical engineering. This paper proposes a method o...