On the role of poroelasticity for modeling of stress fields in geothermal reservoirs

Author:

Augustin Matthias

Publisher

Springer Science and Business Media LLC

Subject

General Earth and Planetary Sciences,Modeling and Simulation

Reference60 articles.

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2. Augustin M.: Mathematical aspects of stress field simulations in deep geothermal reservoirs. Schriften zur Funktionalanalysis und Geomathematik 50, 1–26 (2011)

3. Augustin, M., Freeden, W., Gerhards, C., Möhringer, S., Ostermann, I.: Mathematische Methoden in der Geothermie. Math Semesterber. doi: 10.1007/s00591-011-0093-y (2011)

4. Auriault, J.-L.: Contribution à l’étude de la consolidation des sols. PhD Thesis, L’Université scientifique et médicale de Grenoble, France (1973)

5. Auriault J.-L., Sanchez-Palencia E.: Étude du comportement macroscopique d’un milieu poreux saturé déformable. J. Mécanique 16(4), 575–603 (1977)

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1. Propagation of Love Wave in Sandy Layer Under Initial Stress Above Anisotropic Porous Half-Space Under Gravity;Transport in Porous Media;2015-05-27

2. Methods of Fundamental Solutions in Poroelasticity;A Method of Fundamental Solutions in Poroelasticity to Model the Stress Field in Geothermal Reservoirs;2015

3. Boundary Layer Potentials in Poroelasticity;A Method of Fundamental Solutions in Poroelasticity to Model the Stress Field in Geothermal Reservoirs;2015

4. Physical and Mathematical Foundation;A Method of Fundamental Solutions in Poroelasticity to Model the Stress Field in Geothermal Reservoirs;2015

5. Introduction;A Method of Fundamental Solutions in Poroelasticity to Model the Stress Field in Geothermal Reservoirs;2015

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