Mechanics Of Groundwater In Porous Media
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Mechanics of Groundwater in Porous Media
Author | : Muhammad I. Haque |
Publsiher | : CRC Press |
Total Pages | : 276 |
Release | : 2014-07-23 |
Genre | : Science |
ISBN | : 9781466585058 |
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Provides a Balance between the Mathematical and Physical Aspects and the Engineering ApplicationsWritten for engineering and science students, Mechanics of Groundwater in Porous Media explains groundwater from both a mathematical and qualitative standpoint. The book builds up the theory of groundwater flow starting from basic physics and geometric
Fundamentals of Transport Phenomena in Porous Media
Author | : Jacob Bear,M.Y. Corapcioglu |
Publsiher | : Springer Science & Business Media |
Total Pages | : 988 |
Release | : 2012-12-06 |
Genre | : Technology & Engineering |
ISBN | : 9789400961753 |
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This volume contains the lectures presented at the NATO Advanced Study Institute that took place at the University of Delaware, Newark, Delaware, July 18-27, 1982. The purpose of this Institute was to provide an international forum for exchange of ideas and dissemination of knowledge on some selected topics in Mechanics of Fluids in Porous Media. Processes of transport of such extensive quantities as mass of a phase, mass of a component of a phase, momentum and/or heat occur in diversified fields, such as petroleum reservoir engineer ing, groundwater hydraulics, soil mechanics, industrial filtration, water purification, wastewater treatment, soil drainage and irri gation, and geothermal energy production. In all these areas, scientists, engineers and planners make use of mathematical models that describe the relevant transport processes that occur within porous medium domains, and enable the forecasting of the future state of the latter in response to planned activities. The mathe matical models, in turn, are based on the understanding of phenomena, often within the void space, and on theories that re late these phenomena to measurable quantities. Because of the pressing needs in areas of practical interest, such as the develop ment of groundwater resources, the control and abatement of groundwater contamination, underground energy storage and geo thermal energy production, a vast amount of research efforts in all these fields has contributed, especially in the last t~o decades, to our understanding and ability to describe transport phenomena.
Dynamics of Fluids in Porous Media
Author | : Jacob Bear |
Publsiher | : Courier Corporation |
Total Pages | : 802 |
Release | : 2013-02-26 |
Genre | : Technology & Engineering |
ISBN | : 9780486131801 |
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This classic work by one of the world's foremost hydrologists presents a topic encountered in the many fields of science and engineering where flow through porous media plays a fundamental role. It is the standard work in the field, designed primarily for advanced undergraduate and graduate students of ground water hydrology, soil mechanics, soil physics, drainage and irrigation engineering, and petroleum and chemical engineering. It is highly recommended as well for scientists and engineers already working in these fields. Throughout this generously illustrated, richly detailed study, which includes a valuable section of exercises and answers, the emphasis is on understanding the phenomena occurring in porous media and on their macroscopic description. The book's chapter titles reveal its comprehensive coverage: Introduction, Fluids and Porous Matrix Properties, Pressures and Piezometric Head, The Fundamental Fluid Transport Equations in Porous Media, The Equation of Motion of a Homogeneous Fluid, Continuity and Conservation Equations for a Homogeneous Fluid, Solving Boundary and Initial Value Problems, Unconfined Flow and the Dupuit Approximation, Flow of Immiscible Fluids, Hydrodynamic Dispersion, and Models and Analogs. "Systematic and comprehensive . . . a book that satisfies the highest standards of excellence. . . . Will undoubtedly become the standard reference in this field." — R. Allen Freeze, IBM Thomas J. Watson Research Center, Water Resources Research.
Mechanics of Immiscible Fluids in Porous Media
Author | : Arthur Thomas Corey |
Publsiher | : Water Resources Publication |
Total Pages | : 274 |
Release | : 1994 |
Genre | : Technology & Engineering |
ISBN | : 0918334837 |
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Mechanics of Heterogeneous Fluids in Porous Media
Author | : Arthur Thomas Corey |
Publsiher | : Unknown |
Total Pages | : 274 |
Release | : 1977 |
Genre | : Science |
ISBN | : MINN:31951000528810R |
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Fluid Flow In Porous Media Fundamentals And Applications
Author | : Liang Xue,Xiaozhe Guo,Hao Chen |
Publsiher | : World Scientific |
Total Pages | : 408 |
Release | : 2020-09-24 |
Genre | : Science |
ISBN | : 9789811219542 |
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Processes of flow and displacement of multiphase fluids through porous media occur in many subsurface systems and have found wide applications in many scientific, technical, and engineering fields. This book focuses on the fundamental theory of fluid flow in porous media, covering fluid flow theory in classical and complex porous media, such as fractured porous media and physicochemical fluid flow theory. Key concepts are introduced concisely and derivations of equations are presented logically. Solutions of some practical problems are given so that the reader can understand how to apply these abstract equations to real world situations. The content has been extended to cover fluid flow in unconventional reservoirs. This book is suitable for senior undergraduate and graduate students as a textbook in petroleum engineering, hydrogeology, groundwater hydrology, soil sciences, and other related engineering fields.
Transport Processes in Porous Media
Author | : Jacob Bear,M. Yavuz Corapcioglu |
Publsiher | : Springer Science & Business Media |
Total Pages | : 807 |
Release | : 2012-12-06 |
Genre | : Technology & Engineering |
ISBN | : 9789401136280 |
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This volume contains the invited lectures presented during the NATO/ASI conducted in Pullman, Washington, July 9-18, 1989. This is the third in a series of NATO/ASIs on transport phenomena in porous media. The first two, which took place at Newark, Delaware in 1982 and 1985, are devoted to various topics related to the Fundamentals of Transport Processes in Porous Media. The contents of the books resulting from previous NATO/ASIs are given at the end of this book. Transport of extensive quantities such as mass of a fluid phase, mass of chemical species carried by a fluid phase, energy and electric charge in porous media, as encountered in a large variety of engineering disciplines, is an emerging interdisciplinary field. The groundwater flow, the simultaneous flow of gas, oil and water in petroleum reservoirs, the movement and accumulation of pollutants in the saturated and unsaturated subsurface zones, thermal energy storage in reservoirs, land subsidence in response to charges in overburden loads, or to pumping of fluids from underground formations, wave propagation in seismic investigations or as produced by earthquakes, chemical reactors, water flow through sand filters and the movement of fluids through kidneys, may serve as examples of fields in which the theory of transport in porous media is employed.
Mechanics of Oil and Gas Flow in Porous Media
Author | : Dang Li,Junbin Chen |
Publsiher | : Springer Nature |
Total Pages | : 343 |
Release | : 2020-08-17 |
Genre | : Science |
ISBN | : 9789811573132 |
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This book discusses various aspects of percolation mechanics. It starts with the driving forces and driving modes and then examines in detail the steady state percolation of single-phase incompressible fluids, percolation law of natural gas and percolation of non-Newtonian fluids. Progressing from simple to complex concepts, it also analyzes Darcy’s law, providing a basis for the study of reservoir engineering, oil recovery engineering and reservoir numerical simulation. It serves as a textbook for undergraduate students majoring in petroleum engineering, petroleum geology and groundwater engineering, and offers a valuable reference guide for graduate students, researchers and technical engineers engaged in oil and gas exploration and development.