The Flow of Homogeneous Fluids Through Porous Media
Author: M. Muskat
Publisher: Springer
Published: 1982-01-31
Total Pages: 792
ISBN-13:
DOWNLOAD EBOOKRead and Download eBook Full
Author: M. Muskat
Publisher: Springer
Published: 1982-01-31
Total Pages: 792
ISBN-13:
DOWNLOAD EBOOKAuthor: Morris Muskat
Publisher:
Published: 2004
Total Pages: 763
ISBN-13:
DOWNLOAD EBOOKAuthor: M. Muskat
Publisher:
Published: 1982
Total Pages:
ISBN-13:
DOWNLOAD EBOOKAuthor: Jacob Bear
Publisher:
Published: 1972
Total Pages: 414
ISBN-13:
DOWNLOAD EBOOKAuthor: Liang Xue
Publisher: World Scientific
Published: 2020-09-24
Total Pages: 408
ISBN-13: 9811219540
DOWNLOAD EBOOKProcesses 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.
Author: Royal Eugene Collins
Publisher: Pennwell Books
Published: 1976
Total Pages: 290
ISBN-13:
DOWNLOAD EBOOKAuthor: Dang Li
Publisher: Springer Nature
Published: 2020-08-17
Total Pages: 343
ISBN-13: 9811573131
DOWNLOAD EBOOKThis 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.
Author: Kambiz Vafai
Publisher: CRC Press
Published: 2005-03-30
Total Pages: 771
ISBN-13: 0415876389
DOWNLOAD EBOOKOver the last three decades, advances in modeling flow, heat, and mass transfer through a porous medium have dramatically transformed engineering applications. Comprehensive and cohesive, Handbook of Porous Media, Second Edition presents a compilation of research related to heat and mass transfer including the development of practical applications
Author: Henk Huinink
Publisher: Morgan & Claypool Publishers
Published: 2016-09-06
Total Pages: 150
ISBN-13: 1681742985
DOWNLOAD EBOOKThis book introduces the reader into the field of the physics of processes occurring in porous media. It targets Master and PhD students who need to gain fundamental understanding the impact of confinement on transport and phase change processes. The book gives brief overviews of topics like thermodynamics, capillarity and fluid mechanics in order to launch the reader smoothly into the realm of porous media. In-depth discussions are given of phase change phenomena in porous media, single phase flow, unsaturated flow and multiphase flow. In order to make the topics concrete the book contains numerous example calculations. Further, as much experimental data as possible is plugged in to give the reader the ability to quantify phenomena.
Author: Adrian Bejan
Publisher: Springer Science & Business Media
Published: 2013-03-09
Total Pages: 406
ISBN-13: 1475742215
DOWNLOAD EBOOKPorous and Complex Flow Structures in Modern Technologies represents a new approach to the field, considering the fundamentals of porous media in terms of the key roles played by these materials in modern technology. Intended as a text for advanced undergraduates and as a reference for practicing engineers, the book uses the physics of flows in porous materials to tie together a wide variety of important issues from such fields as biomedical engineering, energy conversion, civil engineering, electronics, chemical engineering, and environmental engineering. Thus, for example, flows of water and oil through porous ground play a central role in energy exploration and recovery (oil wells, geothermal fluids), energy conversion (effluents from refineries and power plants), and environmental engineering (leachates from waste repositories). Similarly, the demands of miniaturization in electronics and in biomedical applications are driving research into the flow of heat and fluids through small-scale porous media (heat exchangers, filters, gas exchangers). Filters, catalytic converters, the drying of stored grains, and a myriad of other applications involve flows through porous media. By providing a unified theoretical framework that includes not only the traditional homogeneous and isotropic media but also models in which the assumptions of representative elemental volumes or global thermal equilibrium fail, the book provides practicing engineers the tools they need to analyze complex situations that arise in practice. This volume includes examples, solved problems and an extensive glossary of symbols.