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Featured researches published by M. I. Herreros.


Archive | 2004

Modelling of Landslides: (II) Propagation

M. Pastor; M. Quecedo; E. González; M. I. Herreros; J. A. Fernandez Merodo; P. Mira

This paper presents a numerical model wich can be used to simulate phenomena such as flowslides, avalanches, mudflows and debris flows. The proposed approach is eulerian, and balance of mass and momentum equations are integrated on depht. Depending on the material involved, the model can implement rheological models such as Bingham or frictional fluids. A simple dissipation law allows the approximation of pore pressure dissipation in the sliding mass. Finally some applications are presented.


Revue française de génie civil | 2002

Modelling of debris flows and flow slides

M. Pastor; José Antonio Fernandez Merodo; M. Quecedo; M. I. Herreros; E. González; P. Mira

ABSTRACT This paper presents a numerical model which can be used to simulate phenomena such as flowslides, avalanches, mudflows and debris flows. The proposed approach is la- grangian, and balance of mass and momentum equations are integrated on depth. Depending on the material involved, the model can implement rheological models such as Bingham orfrictional fluids. A simple dissipation law allows the approximation of pore pressure dissipation in the sliding mass. Finally, some applications are presented.


Session of the European Graduate School Geomaterials | 2003

An eulerian model for soil dynamics: application to fast slope movements

M. Pastor; M. Quecedo; E. González; M. I. Herreros; José Antonio Fernandez Merodo; P. Mira

ABSTRACT This paper presents a theoretical framework to model soil behaviour under dynamic conditions. The equations describing the coupling between the solid skeleton and the pore fluids are presented following an eulerian approach based on the mixture theory that can provide an unified formulation for both initiation and propagation phases of fast landslides, such as avalanches of rocks and granular materials, flowslides and debris flows.


Revue Française de Génie Civil | 2003

An eulerian model for soil dynamics: application to fast slope movements: (III) Rheological models

M. Pastor; M. Quecedo; Elena Gonzales; M. I. Herreros; José Antonio Fernandez Merodo; P. Mira

ABSTRACT This paper presents some useful rheological models that can be used to characterize the soil behaviour in fast landslides. The approach followed is based on a general formulation of the stress tensor in terms of I, D and D 2 where D is the rate of deformation tensor. Then we particularize it to simple shear flow conditions and compare it to some simple rheological laws. From here, expressions valid for general flow conditions are proposed.


Revue Française de Génie Civil | 2003

An eulerian model for soil dynamics: application to fast slope movements: (II) A simple velocity-pore pressure formulation

M. Pastor; M. Quecedo; Elena Gonzales; M. I. Herreros; José Antonio Fernandez Merodo; P. Mira

ABSTRACT This paper presents an eulerian approach that can be used to model the propagation phase of catastrophic landslides. In the case of material composed by a solid skeleton and pore fluids, two physical phenomena must be considered: i) the propagation and, ii) the consolidation and dissipation of pore pressures. The PDEs are integrated in depth and solved with the Finite Element Method using the Taylor-Galerkin algorithm. Its possible to take into account the curvature effect of the bed of the slide using a curvilinear reference system or adding the contribution of the centrifuge force to the bottom friction force. A simple frictional fluid flow example shows the influence of the curvature effect. Role of pore pressure dissipation is analyzed modelling the Aberfan flowslide (1966).


Computer Methods in Applied Mechanics and Engineering | 2004

Modelling of diffuse failure mechanisms of catastrophic landslides

J. A. Fernández Merodo; M. Pastor; P. Mira; Laura Tonni; M. I. Herreros; E. González; R. Tamagnini


Journal of Hydraulic Engineering | 2004

Simple Approximation to Bottom Friction for Bingham Fluid Depth Integrated Models

M. Pastor; M. Quecedo; E. González; M. I. Herreros; J. A. Fernández Merodo; P. Mira


Computer Methods in Applied Mechanics and Engineering | 2005

Comparison of two mathematical models for solving the dam break problem using the FEM method

M. Quecedo; M. Pastor; M. I. Herreros; J. A. Fernández Merodo; Qinfen Zhang


Computer Methods in Applied Mechanics and Engineering | 2006

Application of level-set approach to moving interfaces and free surface problems in flow through porous media

M. I. Herreros; M. Mabssout; M. Pastor


Rock Mechanics and Rock Engineering | 2008

Mathematical, Constitutive and Numerical Modelling of Catastrophic Landslides and Related Phenomena

M. Pastor; J. A. Fernández Merodo; M. I. Herreros; P. Mira; E. González; B. Haddad; M. Quecedo; Laura Tonni; V. Drempetic

Collaboration


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M. Pastor

Centro de Estudios y Experimentación de Obras Públicas

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M. Quecedo

Centro de Estudios y Experimentación de Obras Públicas

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P. Mira

Centro de Estudios y Experimentación de Obras Públicas

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E. González

Centro de Estudios y Experimentación de Obras Públicas

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José Antonio Fernandez Merodo

Centro de Estudios y Experimentación de Obras Públicas

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J. A. Fernández Merodo

Technical University of Madrid

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Elena Gonzales

Centro de Estudios y Experimentación de Obras Públicas

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R. Tamagnini

Sapienza University of Rome

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B. Haddad

Centro de Estudios y Experimentación de Obras Públicas

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