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Imperial College Lectures In Petroleum Engineering, The - Volume 5: Fluid Flow In Porous Media (Hardcover): Robert W Zimmerman Imperial College Lectures In Petroleum Engineering, The - Volume 5: Fluid Flow In Porous Media (Hardcover)
Robert W Zimmerman
R2,191 Discovery Miles 21 910 Ships in 10 - 15 working days

This book presents, in a self-contained form, the equations of fluid flow in porous media, with a focus on topics and issues that are relevant to petroleum reservoir engineering. No prior knowledge of the field is assumed on the part of the reader, and particular care is given to careful mathematical and conceptual development of the governing equations, and solutions for important reservoir flow problems. Fluid Flow in Porous Media starts with a discussion of permeability and Darcy's law, then moves on to a careful derivation of the pressure diffusion equation. Solutions are developed and discussed for flow to a vertical well in an infinite reservoir, in reservoirs containing faults, in bounded reservoirs, and to hydraulically fractured wells. Special topics such as the dual-porosity model for fractured reservoirs, and fluid flow in gas reservoirs, are also covered. The book includes twenty problems, along with detailed solutions.As part of the Imperial College Lectures in Petroleum Engineering, and based on a lecture series on the same topic, this book provides the introductory information needed for students of the petroleum engineering and hydrology.

Fluid Flow in Fractured Rocks (Hardcover): Robert W Zimmerman, Adriana Paluszny Fluid Flow in Fractured Rocks (Hardcover)
Robert W Zimmerman, Adriana Paluszny
R1,804 Discovery Miles 18 040 Ships in 12 - 17 working days

Authoritative textbook providing a rigorous and application-oriented introduction to fluid flow in fractured rocks Fluid Flow in Fractured Rocks provides an authoritative introduction to the mechanics of fracture growth, flow in single fractures, and flow in fractured porous media, covering a multitude of topics within a single text and providing a holistic understanding of how these subjects interconnect. Discussions of analytical, experimental, and numerical results illustrate and support the explained concepts. Each chapter comes with problems and summary tables, and contains schematic images as well as field photographs, thus providing a comprehensive learning experience that is both mathematically rigorous and accessible. Case studies from key areas such as petroleum geology, radioactive waste disposal, and geothermal energy aid in practical understanding of concepts. Written by two internationally recognized leaders in the field, Fluid Flow in Fractured Rocks includes information on: Nucleation and growth of fractures in rock, with a multiscale characterization of their geometric traits Effect of normal and shear stresses on the transmissivity of a rock fracture and mathematics of fluid flow through a single rock fracture Coupled thermal, hydraulic, mechanical, and chemical (THMC) rock-water interactions Solute transport in rocks, with quantitative descriptions of advection, molecular diffusion, and dispersion Fluid Flow in Fractured Rocks is an essential resource for researchers and postgraduate students who are interested in the field of fluid flow through fractured rocks. The text is also highly suitable for professionals working in civil, environmental, and petroleum engineering.

Imperial College Lectures In Petroleum Engineering, The - Volume 3: Topics In Reservoir Management (Hardcover): Ann Muggeridge,... Imperial College Lectures In Petroleum Engineering, The - Volume 3: Topics In Reservoir Management (Hardcover)
Ann Muggeridge, Sam Krevor, Robert W Zimmerman, Deryck Bond, David Waldren
R2,049 Discovery Miles 20 490 Ships in 12 - 17 working days

This book covers several aspects of reservoir management, from initial analysis to enhanced recovery methods, simulation, and history matching. Split into four parts, part one provides readers with an introduction to the physical properties of reservoir rocks. Part two provides an introduction to enhanced recovery methods used for conventional oil production. Part three shows how numerical methods can be used to simulate the behaviour of oil and gas reservoirs. Finally, part four looks at history matching of reservoirs through the building of numerical models using past data, in order to provide best practice for future reservoir development and management.Written as the third volume in the Imperial College Lectures in Petroleum Engineering, and based on lectures that have been given in the world-renowned Imperial College Masters Course in Petroleum Engineering, Topics in Reservoir Management provides the basic information needed for students and practitioners of petroleum engineering and petroleum geoscience.

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