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Analyse Et Modélisation Des Phénomènes Couplés Thermo-hydro-mécaniques en Milieux Fracturés 3D

Analyse Et Modélisation Des Phénomènes Couplés Thermo-hydro-mécaniques en Milieux Fracturés 3D PDF Author: Israel Cañamon Valera
Publisher:
ISBN:
Category :
Languages : en
Pages : 218

Book Description
This doctoral research is devoted to near-field hydrogeological aspects involving mass and heat transport phenomena in an eventual disposal of radioactive waste in deep geological repositories (tests of the FEBEX project). In the first part, statistical analysis techniques of spatial, temporal, and/or frequency/scale characterization are applied to over 500 time series of the "Mock-Up Test". The second part of the thesis develops a 3D model of coupled Thermo-Hydro-Mechanical (THM) phenomena in a fractured porous rock. A reconstruction of the 3D fracture network is obtained by Monte-Carlo simulation, taking into account geomorphological data collected from the "In-situ test". Then, we estimate the equivalent permeability and the HM coefficients of the fractured network by a superposition method where the permeability of the rock matrix is not negligible. Finally, we develop a coupled THM model for 3D continuum equivalent media and we perform transient simulations of the "In-situ test".

Analyse Et Modélisation Des Phénomènes Couplés Thermo-hydro-mécaniques en Milieux Fracturés 3D

Analyse Et Modélisation Des Phénomènes Couplés Thermo-hydro-mécaniques en Milieux Fracturés 3D PDF Author: Israel Cañamon Valera
Publisher:
ISBN:
Category :
Languages : en
Pages : 218

Book Description
This doctoral research is devoted to near-field hydrogeological aspects involving mass and heat transport phenomena in an eventual disposal of radioactive waste in deep geological repositories (tests of the FEBEX project). In the first part, statistical analysis techniques of spatial, temporal, and/or frequency/scale characterization are applied to over 500 time series of the "Mock-Up Test". The second part of the thesis develops a 3D model of coupled Thermo-Hydro-Mechanical (THM) phenomena in a fractured porous rock. A reconstruction of the 3D fracture network is obtained by Monte-Carlo simulation, taking into account geomorphological data collected from the "In-situ test". Then, we estimate the equivalent permeability and the HM coefficients of the fractured network by a superposition method where the permeability of the rock matrix is not negligible. Finally, we develop a coupled THM model for 3D continuum equivalent media and we perform transient simulations of the "In-situ test".

Numerical Modeling of Hydraulic Fracture Propagation Using Thermo-hydro-mechanical Analysis with Brittle Damage Model by Finite Element Method

Numerical Modeling of Hydraulic Fracture Propagation Using Thermo-hydro-mechanical Analysis with Brittle Damage Model by Finite Element Method PDF Author: Kyoung Min
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
Better understanding and control of crack growth direction during hydraulic fracturing are essential for enhancing productivity of geothermal and petroleum reservoirs. Structural analysis of fracture propagation and impact on fluid flow is a challenging issue because of the complexity of rock properties and physical aspects of rock failure and fracture growth. Realistic interpretation of the complex interactions between rock deformation, fluid flow, heat transfer, and fracture propagation induced by fluid injection is important for fracture network design. In this work, numerical models are developed to simulate rock failure and hydraulic fracture propagation. The influences of rock deformation, fluid flow, and heat transfer on fracturing processes are studied using a coupled thermo-hydro-mechanical (THM) analysis. The models are used to simulate microscopic and macroscopic fracture behaviors of laboratory-scale uniaxial and triaxial experiments on rock using an elastic/brittle damage model considering a stochastic heterogeneity distribution. The constitutive modeling by the energy release rate-based damage evolution allows characterizing brittle rock failure and strength degradation. This approach is then used to simulate the sequential process of heterogeneous rock failures from the initiation of microcracks to the growth of macrocracks. The hydraulic fracturing path, especially for fractures emanating from inclined wellbores and closed natural fractures, often involves mixed mode fracture propagation. Especially, when the fracture is inclined in a 3D stress field, the propagation cannot be modeled using 2D fracture models. Hence, 2D/3D mixed-modes fracture growth from an initially embedded circular crack is studied using the damage mechanics approach implemented in a finite element method. As a practical problem, hydraulic fracturing stimulation often involves fluid pressure change caused by injected fracturing fluid, fluid leakoff, and fracture propagation with brittle rock behavior and stress heterogeneities. In this dissertation, hydraulic fracture propagation is simulated using a coupled fluid flow/diffusion and rock deformation analysis. Later THM analysis is also carried out. The hydraulic forces in extended fractures are solved using a lubrication equation. Using a new moving-boundary element partition methodology (EPM), fracture propagation through heterogeneous media is predicted simply and efficiently. The method allows coupling fluid flow and rock deformation, and fracture propagation using the lubrication equation to solve for the fluid pressure through newly propagating crack paths. Using the proposed model, the 2D/3D hydraulic fracturing simulations are performed to investigate the role of material and rock heterogeneity. Furthermore, in geothermal and petroleum reservoir design, engineers can take advantage of thermal fracturing that occurs when heat transfers between injected flow and the rock matrix to create reservoir permeability. These thermal stresses are calculated using coupled THM analysis and their influence on crack propagation during reservoir stimulation are investigated using damage mechanics and thermal loading algorithms for newly fractured surfaces. The electronic version of this dissertation is accessible from http://hdl.handle.net/1969.1/150961

Advances in Hydroinformatics

Advances in Hydroinformatics PDF Author: Philippe Gourbesville
Publisher: Springer
ISBN: 9811072183
Category : Science
Languages : en
Pages : 1205

Book Description
This book gathers a collection of extended papers based on presentations given during the SimHydro 2017 conference, held in Sophia Antipolis, Nice, France on June 14–16, 2017. It focuses on how to choose the right model in applied hydraulics and considers various aspects, including the modeling and simulation of fast hydraulic transients, 3D modeling, uncertainties and multiphase flows. The book explores both limitations and performance of current models and presents the latest developments in new numerical schemes, high-performance computing, multiphysics and multiscale methods, and better interaction with field or scale model data. It gathers the lastest theoretical and innovative developments in the modeling field and presents some of the most advance applications on various water related topics like uncertainties, flood simulation and complex hydraulic applications. Given its breadth of coverage, it addresses the needs and interests of practitioners, stakeholders, researchers and engineers alike.

Constitutive Modelling in Geomechanics

Constitutive Modelling in Geomechanics PDF Author: Alexander Puzrin
Publisher: Springer Science & Business Media
ISBN: 3642273955
Category : Science
Languages : en
Pages : 307

Book Description
The purpose of this book is to bridge the gap between the traditional Geomechanics and Numerical Geotechnical Modelling with applications in science and practice. Geomechanics is rarely taught within the rigorous context of Continuum Mechanics and Thermodynamics, while when it comes to Numerical Modelling, commercially available finite elements or finite differences software utilize constitutive relationships within the rigorous framework. As a result, young scientists and engineers have to learn the challenging subject of constitutive modelling from a program manual and often end up with using unrealistic models which violate the Laws of Thermodynamics. The book is introductory, by no means does it claim any completeness and state of the art in such a dynamically developing field as numerical and constitutive modelling of soils. The author gives basic understanding of conventional continuum mechanics approaches to constitutive modelling, which can serve as a foundation for exploring more advanced theories. A considerable effort has been invested here into the clarity and brevity of the presentation. A special feature of this book is in exploring thermomechanical consistency of all presented constitutive models in a simple and systematic manner.

Thermal Storage of Solar Energy

Thermal Storage of Solar Energy PDF Author: C. den Ouden
Publisher: Springer Science & Business Media
ISBN: 9400983026
Category : Technology & Engineering
Languages : en
Pages : 359

Book Description
Proceedings of the International TNO-Symposium held in Amsterdam, The Netherlands, 5-6 November 1980 by the Netherlands Organization for Applied Scientific Research

Bifurcation Analysis in Geomechanics

Bifurcation Analysis in Geomechanics PDF Author: J. Sulem
Publisher: CRC Press
ISBN: 0203697030
Category : Architecture
Languages : en
Pages : 466

Book Description
This book examines the experimental and theoretical aspects of bifurcation analysis as applied to geomechanics. Coverage includes basic continuum mechanics for dry and fluid unfiltrated porous media, bifurcation and stability analyses applied to layered geological media and granular materials, and theories for generalized continua as applied to materials with microstructure and in relation to strain localization phenomena.

Advances in Continuum Mechanics

Advances in Continuum Mechanics PDF Author: Otto Brüller
Publisher: Springer Science & Business Media
ISBN: 3642488900
Category : Science
Languages : en
Pages : 513

Book Description
Recognized authors contributed to this collection of original papers from all fields of research in continuum mechanics. Special emphasis is given to time dependent and independent permanent deformations, damage and fracture. Part of the contributions is dedicated to current efforts in describing material behavior with regard to, e.g., anisotropy, thermal effects, softening, ductile and brittle fracture, porosity and granular structure. Another part deals with numerical aspects arising from the implementation of material laws in the calculations of forming processes, soil mechanics and structural mechanics. Applications of theory and numerical methods belong to the following areas: Comparison with experimental results from material testing, metal forming under thermal and dynamic conditions, failure by damage, fracture and localized deformation modes. The variety of treated topics provides a survery of the actual research in these fields; therefore, the book is addressed to those interested in special problems of continuum mechanics as well as to those interested in a general knowledge.

Modelling and Applications of Transport Phenomena in Porous Media

Modelling and Applications of Transport Phenomena in Porous Media PDF Author: Jacob Bear
Publisher: Springer Science & Business Media
ISBN: 9780792314431
Category : Science
Languages : en
Pages : 398

Book Description
Transport phenomenain porous media are encounteredin various disciplines, e. g. , civil engineering, chemical engineering, reservoir engineering, agricul tural engineering and soil science. In these disciplines, problems are en countered in which various extensive quantities, e. g. , mass and heat, are transported through a porous material domain. Often, the void space of the porous material contains two or three fluid phases, and the various ex tensive quantities are transported simultaneously through the multiphase system. In all these disciplines, decisions related to a system's development and its operation have to be made. To do so a tool is needed that will pro vide a forecast of the system's response to the implementation of proposed decisions. This response is expressed in the form of spatial and temporal distributions of the state variables that describe the system's behavior. Ex amples of such state variables are pressure, stress, strain, density, velocity, solute concentration, temperature, etc. , for each phase in the system, The tool that enables the required predictions is the model. A model may be defined as a simplified version of the real porous medium system and the transport phenomena that occur in it. Because the model is a sim plified version of the real system, no unique model exists for a given porous medium system. Different sets of simplifying assumptions, each suitable for a particular task, will result in different models.

Nisyros Volcano

Nisyros Volcano PDF Author: Volker Jörg Dietrich
Publisher: Springer
ISBN: 3319554603
Category : Science
Languages : en
Pages : 346

Book Description
This book presents the first compilation of scientific research on the island of Nisyros, involving various geoscientific disciplines. Presenting a wealth of illustrations and maps, including a geological map of the volcano, it also provides valuable insights into the geothermal potential of Greece. The island of Nisyros is a Quaternary volcano located at the easternmost end of the South Aegean Volcanic Arc. The island is nearly circular, with an average diameter of 8 km, and covers an area of approximately 42 km2. It lies above a base of Mesozoic limestone and a thin crust, with the mantle-crust transition located at a depth of approximately 27 km. The volcanic edifice of Nisyros comprises a succession of calc-alkaline lavas and pyroclastic rocks, as well as a summit caldera with an average diameter of 4 km. Nisyros marks the most recent volcano in the large prehistoric volcanic field between Kos-Yali-Strongyli-Pyrgousa-Pachia-Nisyros, where the largest eruption (“Kos Plateau Tuff”) in the history of the eastern Mediterranean devastated the Dodecanese islands 161,000 years ago. Although the last volcanic activity on Nisyros dates back at least 20,000 to 25,000 years, it encompasses an active hydrothermal system underneath the volcano with temperatures of roughly 100°C at the Lakki plain, the present-day caldera floor and 350°C at a depth of 1,550 m. A high level of seismic unrest, thermal waters and fumarolic gases bear testament to its continuous activity, which is due to a large volume of hot rocks and magma batches at greater depths, between 3,000 and 8,000 m. Violent hydrothermal eruptions accompanied by major earthquakes occurred in 1873 and 1888 and left behind large, “world-wide unique” explosion craters in the old caldera. Through diffuse soil degassing, the discharge of all hydrothermal craters in the Lakki plain releases 68 tons of hydrothermal-volcanic derived CO2 and 42 MW of thermal energy per day. This unique volcanic and hydrothermal environment is visited daily by hundreds of tourists.

Continuous Media with Microstructure 2

Continuous Media with Microstructure 2 PDF Author: Bettina Albers
Publisher: Springer
ISBN: 3319282417
Category : Science
Languages : en
Pages : 416

Book Description
This book presents research advances in the field of Continuous Media with Microstructure and considers the three complementary pillars of mechanical sciences: theory, research and computational simulation. It focuses on the following problems: thermodynamic and mathematical modeling of materials with extensions of classical constitutive laws, single and multicomponent media including modern multifunctional materials, wave propagation, multiscale and multiphysics processes, phase transformations, and porous, granular and composite materials. The book presents the proceedings of the 2nd Conference on Continuous Media with Microstructure, which was held in 2015 in Łagów, Poland, in memory of Prof. Krzysztof Wilmański.