Rachel Gelet
Rachel Gelet
Associate Professor, Université de Nantes, Laboratoire GeM, France
E-mailová adresa ověřena na: univ-nantes.fr - Domovská stránka
Název
Citace
Citace
Rok
A thermo‐hydro‐mechanical coupled model in local thermal non‐equilibrium for fractured HDR reservoir with double porosity
R Gelet, B Loret, N Khalili
Journal of Geophysical Research: Solid Earth 117 (B7), 2012
1122012
Borehole stability analysis in a thermoporoelastic dual-porosity medium
R Gelet, B Loret, N Khalili
International Journal of Rock Mechanics and Mining Sciences 50, 65-76, 2012
692012
Thermal recovery from a fractured medium in local thermal non‐equilibrium
R Gelet, B Loret, N Khalili
International Journal for Numerical and Analytical Methods in Geomechanics …, 2013
372013
Thermo-hydro-mechanical study of deformable porous media with double porosity in local thermal non-equilibrium
R Gelet
172011
Poroelastic two‐phase material modeling: theoretical formulation and embedded finite element method implementation
N Benkemoun, R Gelet, E Roubin, JB Colliat
International Journal for Numerical and Analytical Methods in Geomechanics …, 2015
112015
Thermo–hydro–mechanics of deformable porous media with double porosity and local thermal non–equilibrium
R Gelet
Thesis, École Doctorale: Ingénierie–Matériaux Mécanique Energétique …, 2012
82012
A method to assess the suffusion susceptibility of low permeability core soils in compacted dams based on construction data
L Zhang, R Gelet, D Marot, M Smith, JM Konrad
European Journal of Environmental and Civil Engineering 23 (5), 626-644, 2019
72019
Constitutive Modeling of a Suffusive Soil with Porosity-Dependent Plasticity
Q Rousseau, G Sciarra, R Gelet, D Marot
European Working Group on Internal Erosion, 168-179, 2018
42018
The significance of local thermal non-equilibrium in simulations of enhanced geothermal recovery
R Gelet, B Loret, N Khalili
32014
Modelling of internal erosion based on mixture theory: General framework and a case study of soil suffusion
TA Bui, R Gelet, D Marot
International Journal for Numerical and Analytical Methods in Geomechanics …, 2019
22019
Modelling interaction of incompressible fluids and deformable particles with the Material Point Method
R Gelet, G Nguyen, P Rognon
22015
Modelling the poroelastoplastic behaviour of soils subjected to internal erosion by suffusion
Q Rousseau, G Sciarra, R Gelet, D Marot
International Journal for Numerical and Analytical Methods in Geomechanics …, 2020
12020
Large triaxial device for suffusion erodibility and mechanical behavior characterization of coarse soils
D Marot, F Bendahmane, R Andrianatrehina, R Gelet
European Working Group on Internal Erosion in Embankment Dams & their …, 2017
12017
Enhanced Geothermal Reservoirs with two Fluid Cavities and Unequal Solid and Fluid Temperatures
R Gelet, B Loret, N Khalili
Fortieth Workshop on Geothermal Reservoir Engineering, 2015
12015
A study of suffusion kinetics inspired from experimental data: comparison of three different approaches
A Kodieh, R Gelet, D Marot, AZ Fino
Acta Geotechnica, 1-19, 2020
2020
A Method for Estimating Suffusion Susceptibility of a Compacted Dam Core from Construction Data
L Zhang, R Gelet, D Marot, M Smith, JM Konrad
Risk Evaluation and Climate Change Adaptation of Civil Engineering …, 2019
2019
Hydro-mechanical model for a poro-elastic media subjected to suffusion
A Kodieh, R Gelet, NS Nguyen, D Marot, A Fino
Scour and Erosion IX: Proceedings of the 9th International Conference on …, 2018
2018
Assessing Suffusion Susceptibility of Soils by Using Construction Data: Application to a Compacted Till Dam Core
L Zhang, R Gelet, D Marot, M Smith, JM Konrad
European Working Group on Internal Erosion, 313-324, 2018
2018
Assessing suffusion susceptibilities of core dam soils by statistical analysis
L Zhang, R Gelet, D Marot
Academic Journal of Civil Engineering 35 (1), 315-318, 2017
2017
Large triaxial device for suffusion erodibility and mechanical behavior characterization of coarse soils:(Paper and Abstract)
D Marot, F Bendahmane, R Andrianatrehina, R Gelet
2017
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Články 1–20