Miscible Displacement Simulation and Permeability Characterization in Porous Media

Miscible Displacement Simulation and Permeability Characterization in Porous Media
Title Miscible Displacement Simulation and Permeability Characterization in Porous Media PDF eBook
Author Kenji Seto
Publisher
Pages 352
Release 1999
Genre
ISBN

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Characterization of Porous Media by Miscible Displacement

Characterization of Porous Media by Miscible Displacement
Title Characterization of Porous Media by Miscible Displacement PDF eBook
Author Josia C. Kana
Publisher
Pages 180
Release 1964
Genre Secondary recovery of oil
ISBN

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Mathematical Modeling for Flow and Transport Through Porous Media

Mathematical Modeling for Flow and Transport Through Porous Media
Title Mathematical Modeling for Flow and Transport Through Porous Media PDF eBook
Author Gedeon Dagan
Publisher Springer Science & Business Media
Pages 293
Release 2013-06-29
Genre Science
ISBN 9401721998

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The main aim of this paper is to present some new and general results, ap plicable to the the equations of two phase flow, as formulated in geothermal reservoir engineering. Two phase regions are important in many geothermal reservoirs, especially at depths of order several hundred metres, where ris ing, essentially isothermal single phase liquid first begins to boil. The fluid then continues to rise, with its temperature and pressure closely following the saturation (boiling) curve appropriate to the fluid composition. Perhaps the two most interesting theoretical aspects of the (idealised) two phase flow equations in geothermal reservoir engineering are that firstly, only one component (water) is involved; and secondly, that the densities of the two phases are so different. This has led to the approximation of ignoring capillary pressure. The main aim of this paper is to analyse some of the consequences of this assumption, especially in relation to saturation changes within a uniform porous medium. A general analytic treatment of three dimensional flow is considered. Pre viously, three dimensional modelling in geothermal reservoirs have relied on numerical simulators. In contrast, most of the past analytic work has been restricted to one dimensional examples.

Mathematical Modelling Of Flow Through Porous Media - Proceedings Of The Conference

Mathematical Modelling Of Flow Through Porous Media - Proceedings Of The Conference
Title Mathematical Modelling Of Flow Through Porous Media - Proceedings Of The Conference PDF eBook
Author Alain P Bourgeat
Publisher World Scientific
Pages 534
Release 1995-11-30
Genre
ISBN 9814548391

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This proceedings volume contains contributions from leading scientists working on modelling and numerical simulation of flows through porous media and on mathematical analysis of the equations associated to the modelling. There is a number of contributions on rigorous results for stochastic media and for applications to numerical simulations. Modelling and simulation of environment and pollution are also subject of several papers. The published material herein gives an insight to the state of the art in the field with special attention for rigorous discussions and results.

Flow and Transport in Fractured Porous Media

Flow and Transport in Fractured Porous Media
Title Flow and Transport in Fractured Porous Media PDF eBook
Author Peter Dietrich
Publisher Springer Science & Business Media
Pages 455
Release 2005-12-12
Genre Science
ISBN 3540270124

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This book addresses the characterization of flow and transport in porous fractured media from experimental and modeling perspectives. It provides a comprehensive presentation of investigations performed and analyzed on different scales.

Porous Media Transport Phenomena

Porous Media Transport Phenomena
Title Porous Media Transport Phenomena PDF eBook
Author Faruk Civan
Publisher John Wiley & Sons
Pages 443
Release 2011-07-18
Genre Technology & Engineering
ISBN 1118086805

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The book that makes transport in porous media accessible to students and researchers alike Porous Media Transport Phenomena covers the general theories behind flow and transport in porous media a solid permeated by a network of pores filled with fluid which encompasses rocks, biological tissues, ceramics, and much more. Designed for use in graduate courses in various disciplines involving fluids in porous materials, and as a reference for practitioners in the field, the text includes exercises and practical applications while avoiding the complex math found in other books, allowing the reader to focus on the central elements of the topic. Covering general porous media applications, including the effects of temperature and particle migration, and placing an emphasis on energy resource development, the book provides an overview of mass, momentum, and energy conservation equations, and their applications in engineered and natural porous media for general applications. Offering a multidisciplinary approach to transport in porous media, material is presented in a uniform format with consistent SI units. An indispensable resource on an extremely wide and varied topic drawn from numerous engineering fields, Porous Media Transport Phenomena includes a solutions manual for all exercises found in the book, additional questions for study purposes, and PowerPoint slides that follow the order of the text.

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

Fluid Flow and Transport in Porous Media, Mathematical and Numerical Treatment
Title Fluid Flow and Transport in Porous Media, Mathematical and Numerical Treatment PDF eBook
Author Zhangxin Chen
Publisher American Mathematical Soc.
Pages 538
Release 2002
Genre Mathematics
ISBN 082182807X

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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.