Homogenization And Porous Media

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Homogenization and Porous Media

Author : Ulrich Hornung
Publisher : Springer Science & Business Media
Page : 290 pages
File Size : 54,9 Mb
Release : 2012-12-06
Category : Mathematics
ISBN : 9781461219200

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Homogenization and Porous Media by Ulrich Hornung Pdf

This book offers a systematic, rigorous treatment of upscaling procedures related to physical modeling for porous media on micro-, meso- and macro-scales, including detailed studies of micro-structure systems and computational results for dual-porosity models.

Homogenization of Coupled Phenomena in Heterogenous Media

Author : Jean-Louis Auriault,Claude Boutin,Christian Geindreau
Publisher : John Wiley & Sons
Page : 479 pages
File Size : 44,9 Mb
Release : 2010-01-05
Category : Technology & Engineering
ISBN : 9780470610442

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Homogenization of Coupled Phenomena in Heterogenous Media by Jean-Louis Auriault,Claude Boutin,Christian Geindreau Pdf

Both naturally-occurring and man-made materials are often heterogeneous materials formed of various constituents with different properties and behaviours. Studies are usually carried out on volumes of materials that contain a large number of heterogeneities. Describing these media by using appropriate mathematical models to describe each constituent turns out to be an intractable problem. Instead they are generally investigated by using an equivalent macroscopic description - relative to the microscopic heterogeneity scale - which describes the overall behaviour of the media. Fundamental questions then arise: Is such an equivalent macroscopic description possible? What is the domain of validity of this macroscopic description? The homogenization technique provides complete and rigorous answers to these questions. This book aims to summarize the homogenization technique and its contribution to engineering sciences. Researchers, graduate students and engineers will find here a unified and concise presentation. The book is divided into four parts whose main topics are Introduction to the homogenization technique for periodic or random media, with emphasis on the physics involved in the mathematical process and the applications to real materials. Heat and mass transfers in porous media Newtonian fluid flow in rigid porous media under different regimes Quasi-statics and dynamics of saturated deformable porous media Each part is illustrated by numerical or analytical applications as well as comparison with the self-consistent approach.

Porous Media

Author : F. A.L. Dullien
Publisher : Academic Press
Page : 598 pages
File Size : 45,8 Mb
Release : 2012-12-02
Category : Technology & Engineering
ISBN : 9780323139335

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Porous Media by F. A.L. Dullien Pdf

This book examines the relationship between transport properties and pore structure of porous material. Models of pore structure are presented with a discussion of how such models can be used to predict the transport properties of porous media. Portions of the book are devoted to interpretations of experimental results in this area and directions for future research. Practical applications are given where applicable, and are expected to be useful for a large number of different fields, including reservoir engineering, geology, hydrogeology, soil science, chemical process engineering, biomedical engineering, fuel technology, hydrometallurgy, nuclear reactor technology, and materials science. Presents mechanisms of immiscible and miscible displacement (hydrodynamic dispersion) process in porous media Examines relationships between pore structure and fluid transport Considers approaches to enhanced oil recovery Explores network modeling and perolation theory

Filtration in Porous Media and Industrial Application

Author : M.S. Espedal,A. Fasano,A. Mikelic
Publisher : Springer
Page : 225 pages
File Size : 50,9 Mb
Release : 2007-05-06
Category : Science
ISBN : 9783540446569

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Filtration in Porous Media and Industrial Application by M.S. Espedal,A. Fasano,A. Mikelic Pdf

This book is devoted to the presentation of some flow problems in porous media having relevant industrial applications. The main topics covered are: the manufacturing of composite materials, the espresso coffee brewing process, the filtration of liquids through diapers, various questions about flow problems in oil reservoirs and the theory of homogenization. The aim is to show that filtration problems arising in very practical industrial context exhibit interesting and highly nontrivial mathematical aspects. Thus the style of the book is mathematically rigorous, but specifically oriented towards applications, so that it is intended for both applied mathematicians and researchers in various areas of technological interest. The reader is required to have a good knowledge of the classical theory of PDE and basic functional analysis.

Modelling Water Flow in Unsaturated Porous Media

Author : Adam Szymkiewicz
Publisher : Springer Science & Business Media
Page : 254 pages
File Size : 53,8 Mb
Release : 2012-10-11
Category : Science
ISBN : 9783642235580

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Modelling Water Flow in Unsaturated Porous Media by Adam Szymkiewicz Pdf

The book focuses on two issues related to mathematical and numerical modelling of flow in unsaturated porous media. In the first part numerical solution of the governing equations is discussed, with particular emphasis on the spatial discretization of highly nonlinear permeability coefficient. The second part deals with large scale flow in heterogeneous porous media of binary structure. Upscaled models are developed and it is shown that the presence of material heterogeneities may give rise to additional non-equilibrium terms in the governing equations or to hysteresis in the averaged constitutive relationships.

Transport Phenomena in Porous Media

Author : Yasuaki Ichikawa,A.P.S. Selvadurai
Publisher : Springer Science & Business Media
Page : 399 pages
File Size : 53,9 Mb
Release : 2012-02-10
Category : Science
ISBN : 9783642253331

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Transport Phenomena in Porous Media by Yasuaki Ichikawa,A.P.S. Selvadurai Pdf

This monograph presents an integrated perspective of the wide range of phenomena and processes applicable to the study of transport of species in porous materials. In order to formulate the entire range of porous media and their uses, this book gives the basics of continuum mechanics, thermodynamics, seepage and consolidation and diffusion, including multiscale homogenization methods. The particular structure of the book has been chosen because it is essential to be aware of the true properties of porous materials particularly in terms of nano, micro and macro mechanisms. This book is of pedagogical and practical importance to the fields covered by civil, environmental, nuclear and petroleum engineering and also in chemical physics and geophysics as it relates to radioactive waste disposal, geotechnical engineering, mining and petroleum engineering and chemical engineering.

Microporomechanics

Author : Luc Dormieux,Djimedo Kondo,Franz-Josef Ulm
Publisher : John Wiley & Sons
Page : 344 pages
File Size : 42,9 Mb
Release : 2006-08-14
Category : Science
ISBN : 9780470031995

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Microporomechanics by Luc Dormieux,Djimedo Kondo,Franz-Josef Ulm Pdf

Intended as a first introduction to the micromechanics of porous media, this book entitled “Microporomechanics” deals with the mechanics and physics of multiphase porous materials at nano and micro scales. It is composed of a logical and didactic build up from fundamental concepts to state-of-the-art theories. It features four parts: following a brief introduction to the mathematical rules for upscaling operations, the first part deals with the homogenization of transport properties of porous media within the context of asymptotic expansion techniques. The second part deals with linear microporomechanics, and introduces linear mean-field theories based on the concept of a representative elementary volume for the homogenization of poroelastic properties of porous materials. The third part is devoted to Eshelby’s problem of ellipsoidal inclusions, on which much of the micromechanics techniques are based, and illustrates its application to linear diffusion and microporoelasticity. Finally, the fourth part extends the analysis to microporo-in-elasticity, that is the nonlinear homogenization of a large range of frequently encountered porous material behaviors, namely, strength homogenization, nonsaturated microporomechanics, microporoplasticity and microporofracture and microporodamage theory.

Fluid Flow and Transport in Porous Media, Mathematical and Numerical Treatment

Author : Zhangxin Chen,Richard E. Ewing,Joint Summer Research Conference on Fluid Flow and Transport in Porous Media: Mathematical and Numerical Treatment
Publisher : American Mathematical Soc.
Page : 538 pages
File Size : 50,9 Mb
Release : 2002
Category : Fluid dynamics
ISBN : 9780821828076

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Fluid Flow and Transport in Porous Media, Mathematical and Numerical Treatment by Zhangxin Chen,Richard E. Ewing,Joint Summer Research Conference on Fluid Flow and Transport in Porous Media: Mathematical and Numerical Treatment Pdf

The June 2001 conference brought together mathematicians, computational scientists, and engineers working on the mathematical and numerical treatment of fluid flow and transport in porous media. This collection of 43 papers from that conference reports on recent advances in network flow modeling, parallel computation, optimization, upscaling, uncertainty reduction, media characterization, and chemically reactive phenomena. Topics include modeling horizontal wells using hybrid grids in reservoir simulation, a high order Lagrangian scheme for flow through unsaturated porous media, and a streamline front tracking method for two- and three- phase flow. No index. Annotation copyrighted by Book News, Inc., Portland, OR.

Flow in Porous Media

Author : J. Douglas,U. Hornung
Publisher : Birkhäuser
Page : 180 pages
File Size : 41,9 Mb
Release : 2012-12-06
Category : Science
ISBN : 9783034885645

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Flow in Porous Media by J. Douglas,U. Hornung Pdf

Jim Douglas, Jr.' These proceedings reflect some of the thoughts expressed at the Oberwolfach Con ference on Porous Media held June 21-27, 1992, organized by Jim Douglas, Jr., Ulrich Hornung, and Cornelius J, van Duijn. Forty-five scientists attended the conference, and about thirty papers were presented. Fourteen manuscripts were submitted for the proceedings and are incorporated in this volume; they cover a number of aspects of flow and transport in porous media. Indeed, there are 223 individual references in the fourteen papers, but fewer than fifteen are cited in more than one paper. The papers appear in alphabetical order (on the basis of the first author). A brief introduction to each paper is given below. Allen and Curran consider a variety of questions related to the simulation of ground water contamination. Accurate water velocities are essential for acceptable results, and the authors apply mixed finite elements to the pressure equation to obtain these ve locities. Since fine grids are required to resolve heterogenei ties, standard iterative procedures are too slow for practical simulation; the authors introduce a parallelizable, multigrid-based it.erative scheme for the lowest order Raviart-Thomas mixed method. Contaminant transport is approximated through a finite element collocation procedure, and an alternating-direction, modified method of characteristics technique is employed to time-step the simulation. Computational experiments carried out on an nCube 2 computer.

Flow And Transport In Porous Media - Proceedings Of The Summer School

Author : Brian Howard Gilding,Ulrich Hornung,C J Van Duijn,Shutie Xiao
Publisher : World Scientific
Page : 372 pages
File Size : 41,5 Mb
Release : 1992-09-16
Category : Science
ISBN : 9789814507332

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Flow And Transport In Porous Media - Proceedings Of The Summer School by Brian Howard Gilding,Ulrich Hornung,C J Van Duijn,Shutie Xiao Pdf

Contents:Mathematical Modelling of Saturated and Unsaturated Groundwater Flow (B H Gilding)Applications of the Homogenization Method to Flow and Transport in Porous Media (U Hornung)Finite-Element-Approximation of Solute Transport in Porous Media with General Adsorption Processes (P Knabner)Free Boundary Problems in Fresh-Salt Goundwater Flow (C J van Duijn) Readership: Applied mathematicians and engineers. Keywords:Porous Media Equation;Diffusion Equation;Transport Equation;Infiltration Equation;Partial Differential Equation(PDE);Degenerate Parabolic Equation;Nonlinear PDE;Multiphase Flow in Porous Media;Nonlinear Diffusion;Reactive Solutes;Adsorption;Fresh and Salt Groundwater Flow;Homogenisation;Nonlinear Partial Differential Equations

Macroscale Models of Flow Through Highly Heterogeneous Porous Media

Author : M. Panfilov
Publisher : Springer Science & Business Media
Page : 384 pages
File Size : 53,6 Mb
Release : 2013-03-14
Category : Science
ISBN : 9789401595827

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Macroscale Models of Flow Through Highly Heterogeneous Porous Media by M. Panfilov Pdf

The The book book was was planned planned in in such such a a manner manner that that two two basic basic goals goals would would be be reached. reached. On On the the one one hand, hand, the the goal goal was was to to show show some some new new results results in in the the field field of of modeling modeling transport transport through through highly highly heterogeneous heterogeneous media, media, based based on on the the homogenization homogenization theory. theory. Multiple Multiple new new mathematical mathematical models models of of transport transport are are presented presented herein, herein, studying studying their their properties, properties, developing developing methods methods to to compute compute effective effective parameters parameters of of the the averaged averaged media, media, simulation simulation of of cell cell problems, problems, using using new new models models to to simulate simulate some some practical practical problems. problems. High High heterogeneity heterogeneity being being subjected subjected to to the the homogenization homogenization procedure, procedure, generates generates non-local non-local phenomena phenomena and and then then gives gives a a possibility possibility to to develop develop a a new, new, non-local non-local (or (or "dynamic"), "dynamic"), theory theory of of transport transport in in porous porous media. media.

Submicron Porous Materials

Author : Paolo Bettotti
Publisher : Springer
Page : 346 pages
File Size : 52,9 Mb
Release : 2017-02-21
Category : Technology & Engineering
ISBN : 9783319530352

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Submicron Porous Materials by Paolo Bettotti Pdf

This book covers the latest research on porous materials at the submicron scale and inspires readers to better understand the porosity of materials, as well as to develop innovative new materials. A comprehensive range of materials are covered, including carbon-based and organic-based porous materials, porous anodic alumina, silica, and titania-based sol-gel materials. The fabrication, characterization, and applications of these materials are all explored, with applications ranging from sensors, thermoelectrics, catalysis, energy storage, to photovoltaics. Also of practical use for readers are chapters that describe the basics of porous silicon fabrication and its use in optical sensing and drug delivery applications; how thermal transport is affected in porous materials; how to model diffusion in porous materials; and a unique chapter on an innovative spectroscopic technique used to characterize materials' porosity. This is an ideal book for graduate students, researchers, and professionals who work with porous materials.

Porous Media

Author : A Dmitrievsky,M Panfilov
Publisher : World Scientific
Page : 436 pages
File Size : 53,5 Mb
Release : 2000-01-11
Category : Mathematics
ISBN : 9789814494014

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Porous Media by A Dmitrievsky,M Panfilov Pdf

This book concerns a rapidly developing area of science that deals with the behavior of porous media saturated by fluids. Three basic aspects of this field are rather uniformly balanced in the book; namely, complex physical mechanisms of processes in porous media, new mathematical models, and numerical methods of process study. The following topics are included: homogenization and up-scaling of flow through heterogeneous media; micro-structural laws of complex flow at the pore scale; flow with phase transition and chemical reactions in porous media; wave propagation in saturated porous media; numerical model of flow in natural oil reservoirs; non-classical models of flow, percolation, fractals, foam flow; multi-phase flow with free surface. The contributors to this volume are leading researchers in the field. Contents: Physics of Processes with Phase Transition in Porous MediaDynamics of the Fluid/Fluid Interface IstabilityNew Models of Two-Phase Flow through Porous MediaFlow of Foam and Non-Newtonian FluidsAveraged Models of Navie-Stokes Flow in Porous MediaHomogenization of Flow through Highly Heterogeneous MediaGroundwater Pollution ModelsInverse Problems, Optimization, Parameter Estimation Readership: Applied mathematicians. Keywords:Porous Media;Homogenization;Non-Newtonian Fluids

Homogenization Methods for Multiscale Mechanics

Author : Chiang C. Mei,Bogdan Vernescu
Publisher : World Scientific
Page : 349 pages
File Size : 48,5 Mb
Release : 2010
Category : Mathematics
ISBN : 9789814282444

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Homogenization Methods for Multiscale Mechanics by Chiang C. Mei,Bogdan Vernescu Pdf

In many physical problems several scales present either in space or in time, caused by either inhomogeneity of the medium or complexity of the mechanical process. A fundamental approach is to first construct micro-scale models, and then deduce the macro-scale laws and the constitutive relations by properly averaging over the micro-scale. The perturbation method of multiple scales can be used to derive averaged equations for a much larger scale from considerations of the small scales. In the mechanics of multiscale media, the analytical scheme of upscaling is known as the Theory of Homogenization The authors share the view that the general methods of homogenization should be more widely understood and practiced by applied scientists and engineers. Hence this book is aimed at providing a less abstract treatment of the theory of homogenization for treating inhomogeneous media, and at illustrating its broad range of applications. Each chapter deals with a different class of physical problems. To tackle a new problem, the novel approach of first discussing the physically relevant scales, then identifying the small parameters and their roles in the normalized governing equations is adopted. The details of asymptotic analysis are only explained afterwards.

Mathematical and Numerical Modeling in Porous Media

Author : Martin A. Diaz Viera,Pratap Sahay,Manuel Coronado,Arturo Ortiz Tapia
Publisher : CRC Press
Page : 372 pages
File Size : 52,7 Mb
Release : 2012-07-24
Category : Mathematics
ISBN : 9780415665377

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Mathematical and Numerical Modeling in Porous Media by Martin A. Diaz Viera,Pratap Sahay,Manuel Coronado,Arturo Ortiz Tapia Pdf

Porous media are broadly found in nature and their study is of high relevance in our present lives. In geosciences porous media research is fundamental in applications to aquifers, mineral mines, contaminant transport, soil remediation, waste storage, oil recovery and geothermal energy deposits. Despite their importance, there is as yet no complete understanding of the physical processes involved in fluid flow and transport. This fact can be attributed to the complexity of the phenomena which include multicomponent fluids, multiphasic flow and rock-fluid interactions. Since its formulation in 1856, Darcy’s law has been generalized to describe multi-phase compressible fluid flow through anisotropic and heterogeneous porous and fractured rocks. Due to the scarcity of information, a high degree of uncertainty on the porous medium properties is commonly present. Contributions to the knowledge of modeling flow and transport, as well as to the characterization of porous media at field scale are of great relevance. This book addresses several of these issues, treated with a variety of methodologies grouped into four parts: I Fundamental concepts II Flow and transport III Statistical and stochastic characterization IV Waves The problems analyzed in this book cover diverse length scales that range from small rock samples to field-size porous formations. They belong to the most active areas of research in porous media with applications in geosciences developed by diverse authors. This book was written for a broad audience with a prior and basic knowledge of porous media. The book is addressed to a wide readership, and it will be useful not only as an authoritative textbook for undergraduate and graduate students but also as a reference source for professionals including geoscientists, hydrogeologists, geophysicists, engineers, applied mathematicians and others working on porous media.