The Influence Of Specular Reflection On The Permeability Of Porous Media
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Fundamentals of Gas Shale Reservoirs
Author | : Reza Rezaee |
Publisher | : John Wiley & Sons |
Total Pages | : 417 |
Release | : 2015-07-27 |
Genre | : Technology & Engineering |
ISBN | : 1118645790 |
Provides comprehensive information about the key exploration, development and optimization concepts required for gas shale reservoirs Includes statistics about gas shale resources and countries that have shale gas potential Addresses the challenges that oil and gas industries may confront for gas shale reservoir exploration and development Introduces petrophysical analysis, rock physics, geomechanics and passive seismic methods for gas shale plays Details shale gas environmental issues and challenges, economic consideration for gas shale reservoirs Includes case studies of major producing gas shale formations
Geological disasters and its prevention in deep mining
Author | : Shuren Wang |
Publisher | : Frontiers Media SA |
Total Pages | : 190 |
Release | : 2023-02-02 |
Genre | : Science |
ISBN | : 2832513115 |
Diffusion in Gases and Porous Media
Author | : Roberto Cunningham |
Publisher | : Springer Science & Business Media |
Total Pages | : 293 |
Release | : 2013-06-29 |
Genre | : Science |
ISBN | : 147574983X |
The world we live in exhibits, on different scales, many phenomena related to the diffusion of gases. Among them are the movement of gases in earth strata, the aeration of soils, the drying of certain materials, some catalytic reactions, purification by adsorption, isotope separation, column chro matography, cooling of nuclear reactors, and the permeability of various packing materials. The evolution of the understanding of this subject has not always been straightforward and progressive-there has been much confusion and many doubts and misunderstandings, some of which remain to this day. The main reason for the difficulties in the development of this subject is, we now know, the lack of an understanding of the effects of walls on diffusing systems. Textbooks usually treat diffusion on two levels: at the physicochemi cal or molecular level, making use of the kinetic theory of gases (which while a very rigorous and well-founded theory nevertheless is valid only for systems without walls), or at the level of a transport phenomenon, a level geared toward applications. The influence of walls is usually disregarded or is treated very briefly (for example, by taking account of the Knudsen regime or by introducing a transition regime of limited validity) in a way unconnected with previous studies. As a consequence, the extensive, gener alized, and well-founded knowledge of systems without walls has often been applied without sound basis to real situations, i.e., to systems with walls.
Heat Transfer and Fluid Flow
Author | : James M. Jacobs |
Publisher | : |
Total Pages | : 444 |
Release | : 1958 |
Genre | : Fluid dynamics |
ISBN | : |
A total of 2519 annotated references to the unclassified report literature is presented. Subjects covered under heat transfer and fluid flow include radioinduced heating; boiling; boiler, evaporators, pump, and heat exchanger design; hydrodynamics; coolants and their properties; thermal and flow instrumentation; high temperature materials; thermal properties of materials; and thermal insulation. Subjects covered less completely include thermodynamics; aerodynamics; high temperature corrosion; corrosion specific to heat transfer systems; erosion; mass transfer; corrosion film formation and effects; coolant processing and radioactivity; radiation effects of heat transfer materials; and pertinent data of thermonuclear processes. Subject, report number availability, and author indexes are given.