Hydromechanical And Thermohydromechanical Behaviour Of Deep Argillaceous Rock Theory And Experiments

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Hydromechanical and Thermohydromechanical Behaviour of Deep Argillaceous Rock : Theory and Experiments

These papers address state-of-the-art knowledge of thermo-hydro-mechanical behaviours of deep argillaceous rocks. They introduce achievements in laboratory test methods for determining the coupling parameters of deep argillaceous rocks, amongst other things.
Geomechanics in CO2 Storage Facilities

Author: Gilles Pijaudier-Cabot
language: en
Publisher: John Wiley & Sons
Release Date: 2013-01-29
CO2 capture and geological storage is seen as the most effective technology to rapidly reduce the emission of greenhouse gases into the atmosphere. Up until now and before proceeding to an industrial development of this technology, laboratory research has been conducted for several years and pilot projects have been launched. So far, these studies have mainly focused on transport and geochemical issues and few studies have been dedicated to the geomechanical issues in CO2 storage facilities. The purpose of this book is to give an overview of the multiphysics processes occurring in CO2 storage facilities, with particular attention given to coupled geomechanical problems. The book is divided into three parts. The first part is dedicated to transport processes and focuses on the efficiency of the storage complex and the evaluation of possible leakage paths. The second part deals with issues related to reservoir injectivity and the presence of fractures and occurrence of damage. The final part of the book concerns the serviceability and ageing of the geomaterials whose poromechanical properties may be altered by contact with the injected reactive fluid.
Experimental and Theoretical Study on Thermal Consolidation Behavior of Saturated Clay

This book presents a detailed study of the thermal consolidation behavior of saturated clay from experimental and theoretical aspects, analyzes the thermal consolidation response of saturated clay under the influence of different drainage conditions, confining pressures, temperature paths, and over-consolidation ratios, and carries out theoretical modelling of thermal consolidation based on thermoelasticity theory. The study of thermodynamic properties of clayey soils under temperature load has a wide range of applications in the fields of geothermal resource development, thermal energy storage, and nuclear waste disposal. This book provides an in-depth analysis of the thermal consolidation properties of saturated clay through systematic experimental studies and meticulous theoretical modelling. The relevant experimental results and theoretical analysis methods can provide valuable references for the study of soil thermal properties. This book is intended for graduate students and researchers in related fields such as geotechnical engineering, environmental engineering, soil science, as well as design engineers.