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Particle Transport in Aqueous Flow Through Porous Media

Particle Transport in Aqueous Flow Through Porous Media PDF Author: Kuan-Mu Yao
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Particle Transport in Aqueous Flow Through Porous Media

Particle Transport in Aqueous Flow Through Porous Media PDF Author: Kuan-Mu Yao
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Particle Transport in Flow Through Porous Media

Particle Transport in Flow Through Porous Media PDF Author: Russell Edgar Mau
Publisher:
ISBN:
Category : Fluid dynamics
Languages : en
Pages : 302

Book Description


Particle Transport Through Porous Media

Particle Transport Through Porous Media PDF Author: Laura M. McDowell-Boyer
Publisher:
ISBN:
Category : Fluid dynamics
Languages : en
Pages : 170

Book Description


Porous Media Transport Phenomena

Porous Media Transport Phenomena PDF Author: Faruk Civan
Publisher: John Wiley & Sons
ISBN: 1118086805
Category : Technology & Engineering
Languages : en
Pages : 443

Book Description
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.

Transport Processes in Porous Media

Transport Processes in Porous Media PDF Author: Jacob Bear
Publisher: Springer Science & Business Media
ISBN: 9401136289
Category : Technology & Engineering
Languages : en
Pages : 807

Book Description
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.

NBS Special Publication

NBS Special Publication PDF Author:
Publisher:
ISBN:
Category : Weights and measures
Languages : en
Pages : 360

Book Description


Essentials of Multiphase Flow and Transport in Porous Media

Essentials of Multiphase Flow and Transport in Porous Media PDF Author: George F. Pinder
Publisher: John Wiley & Sons
ISBN: 0470380799
Category : Technology & Engineering
Languages : en
Pages : 273

Book Description
Learn the fundamental concepts that underlie the physics of multiphase flow and transport in porous media with the information in Essentials of Multiphase Flow in Porous Media, which demonstrates the mathematical-physical ways to express and address multiphase flow problems. Find a logical, step-by-step introduction to everything from the simple concepts to the advanced equations useful for addressing real-world problems like infiltration, groundwater contamination, and movement of non-aqueous phase liquids. Discover and apply the governing equations for application to these and other problems in light of the physics that influence system behavior.

Report

Report PDF Author: United States. National Bureau of Standards
Publisher:
ISBN:
Category : Hydraulic engineering
Languages : en
Pages : 696

Book Description


Porous Media Fluid Transport and Pore Structure

Porous Media Fluid Transport and Pore Structure PDF Author: F Dullien
Publisher: Elsevier
ISBN: 0323151353
Category : Technology & Engineering
Languages : en
Pages : 417

Book Description
Porous Media: Fluid Transport and Pore Structure presents relevant data on the role of pore structure in terms of transport phenomena in pore spaces. The information is then applied to the interpretation of various experiments and results of model calculations. This book emphasizes the discussion of ""flow through porous media"" in terms of interactions among the three main factors. These factors are transport phenomena, interfacial effects, and pore structure. An introductory chapter opens the text and presents some of the basic concepts and terms that will be encountered all throughout. Chapters 2 to 4 focus on the important foundations of the physical phenomena as applied in the pore space of porous media. These foundations are capillarity, pore structure, and single phase flow and diffusion. Chapters 5 to 7 discuss more in detail the different applications of pore structure to various operations and processes. Some of the concepts covered in this part of the book include flow and/or diffusion through a porous medium, simultaneous flow of immiscible fluids and immiscible displacement, and miscible displacement and hydrodynamic dispersion. This book is a good reference to students, scientists, and engineers in the field of chemistry, physics, and biology.

Discrete Particle Transport in Porous Media

Discrete Particle Transport in Porous Media PDF Author: Joon Sik Yoon
Publisher:
ISBN:
Category :
Languages : en
Pages : 362

Book Description
(Cont.) The entrapment mechanism was physical interlocking on surface roughness and physical straining at the contact points. Particle sedimentation and particle re-entrainment as a result of flow field perturbations were the main mechanisms contributing to the hindrance of particles. Changes in the concentrations of particles that were entrapped or hindered were observed with distance from the particle injection point. These changes, which became more significant as the fluid velocity decreased, were attributed to particle size distribution effects. Experiments conducted with an upward pore fluid velocity supported the hypothesis that particle entrapment and hindrance are driven by gravity. The comparison of the experimental results with particle transport models based on macroscopic mass balance equations demonstrated some of the short-comings of these models. Drainage tests performed using the geotechnical centrifuge and the new visualization technique e also provided initial insight into discrete particle behavior in an unsaturated porous medium. The results of these tests show that particles were scavenged by the air-water interface, adsorbed on the air-water interface of the pendular rings, and were retained by film straining. Thus, it is believed that the visualization technique developed during this work can be used to further investigations of discrete particle transport behavior in partially saturated porous media.