Multiphase Flows in Deformable Geomaterials proposes that multiscale coupling of multiphase flow and multicomponents within a deformable porous medium is complex and interdisciplinary and lacks a unified theory. To address this gap, the book proposes chemo-physical Mixture-Coupling Theory and non-equilibrium thermodynamic processes to derive governing equations for multiphase transport and mechanical behavior. This addresses challenges in the existing multiscale coupling theory and brings together physics and chemistry within the realm of thermodynamics. The series of constitutive equations can be applied to any constitutive model in porous media, across many disciplines related to soils, concrete, and catalysis.
This book is particularly addressed to geotechnical and geoenvironmental engineering—bringing together multiphase flows of water and gas, chemicals, and within soils and rocks. Highlights include hydro-mechanical coupling, unsaturated hydro-mechanical-chemical coupling, thermo-hydro-mechanical coupling, and thermo-hydromechanical-chemical coupling, with consideration of chemo and thermo osmosis and microscopic swelling mechanisms. It is written for advanced students and researchers.
The Open Access version of this book, available at http://www.routledge.com/9780367343064, has been made available under a Creative Commons [Attribution (CC BY)] 4.0 license.
Les informations fournies dans la section « Synopsis » peuvent faire référence à une autre édition de ce titre.
Prof. Dr. Xiaohui Chen is an Associate Professor in Geotechnical Engineering and a Chartered Environmentalist at the University of Leeds with a research focus in both geomechanics and geochemistry. He is a pioneer in the development of Mixture-Coupling Theory.
Dr. Manhui Wang is the Head of Research Platforms at the University of Liverpool's IT Services Department and an expert in computational chemistry and high-performance computing.
Les informations fournies dans la section « A propos du livre » peuvent faire référence à une autre édition de ce titre.
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Hardcover. Etat : new. Hardcover. Multiphase Flows in Deformable Geomaterials proposes that multiscale coupling of multiphase flow and multicomponents within a deformable porous medium is complex and interdisciplinary and lacks a unified theory. To address this gap, the book proposes chemo-physical Mixture-Coupling Theory and non-equilibrium thermodynamic processes to derive governing equations for multiphase transport and mechanical behavior. This addresses challenges in the existing multiscale coupling theory and brings together physics and chemistry within the realm of thermodynamics. The series of constitutive equations can be applied to any constitutive model in porous media, across many disciplines related to soils, concrete, and catalysis.This book is particularly addressed to geotechnical and geoenvironmental engineeringbringing together multiphase flows of water and gas, chemicals, and within soils and rocks. Highlights include hydromechanical coupling, unsaturated hydromechanicalchemical coupling, thermohydromechanical coupling, and thermohydromechanicalchemical coupling, with consideration of chemo and thermo osmosis and microscopic swelling mechanisms. It is written for advanced students and researchers.The Open Access version of this book, available at , has been made available under a Creative Commons [Attribution (CC BY)] 4.0 license. Multiscale coupling of multiphase flow and multicomponents within a deformable porous medium is complex and interdisciplinary. Chemo-physical coupled mixture theory and non-linear thermodynamics processes can be used to to derive multi-phase transport equations and mechanics. This book is particularly addressed to geoengineering. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. N° de réf. du vendeur 9780367343064
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Hardcover. Etat : new. Hardcover. Multiphase Flows in Deformable Geomaterials proposes that multiscale coupling of multiphase flow and multicomponents within a deformable porous medium is complex and interdisciplinary and lacks a unified theory. To address this gap, the book proposes chemo-physical Mixture-Coupling Theory and non-equilibrium thermodynamic processes to derive governing equations for multiphase transport and mechanical behavior. This addresses challenges in the existing multiscale coupling theory and brings together physics and chemistry within the realm of thermodynamics. The series of constitutive equations can be applied to any constitutive model in porous media, across many disciplines related to soils, concrete, and catalysis.This book is particularly addressed to geotechnical and geoenvironmental engineeringbringing together multiphase flows of water and gas, chemicals, and within soils and rocks. Highlights include hydromechanical coupling, unsaturated hydromechanicalchemical coupling, thermohydromechanical coupling, and thermohydromechanicalchemical coupling, with consideration of chemo and thermo osmosis and microscopic swelling mechanisms. It is written for advanced students and researchers.The Open Access version of this book, available at , has been made available under a Creative Commons [Attribution (CC BY)] 4.0 license. Multiscale coupling of multiphase flow and multicomponents within a deformable porous medium is complex and interdisciplinary. Chemo-physical coupled mixture theory and non-linear thermodynamics processes can be used to to derive multi-phase transport equations and mechanics. This book is particularly addressed to geoengineering. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. N° de réf. du vendeur 9780367343064
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