Fluid Dynamics of Oil and Gas Reservoirs

Fluid Dynamics of Oil and Gas Reservoirs
Author: M. Z. Rachinsky,V. Y. Kerimov
Publsiher: John Wiley & Sons
Total Pages: 640
Release: 2015-02-23
Genre: Science
ISBN: 9781118999035

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Whether as a textbook for the petroleum engineering student or areference for the veteran engineer working in the field, this newvolume is a valuable asset in the engineer’s library for new,tested methods of more efficient oil and gas exploration andproduction and better estimating methods. In this book, theauthors combine a rigorous, yet easy to understand, approach topetrophysics and how it is applied to petroleum and environmentalengineering to solve multiple problems that the engineer orgeologist faces every day. Useful in the prediction ofeverything from crude oil composition, pore size distribution inreservoir rocks, groundwater contamination, and other types offorecasting, this approach provides engineers and students alikewith a convenient guide to many real-world applications. Fluid dynamics is an extremely important part of the extractionprocess, and petroleum geologists and engineers must have a workingknowledge of fluid dynamics of oil and gas reservoirs in order tofind them and devise the best plan for extraction, before drillingcan begin. This book offers the engineer and geologist afundamental guide for accomplishing these goals, providingmuch-needed calculations and formulas on fluid flow, rockproperties, and many other topics that are encountered everyday. The approach taken in Fluid Dynamics of Oil and GasReservoirs is unique and has not been addressed until now in abook format. Readers now have the ability to review some of themost well-known fields in the world, from the USA to Russiaand Asia. Useful for the veteran engineer or scientist and the studentalike, this book is a must-have for any geologist, engineer, orstudent working in the field of upstream petroleum engineering.

Working Guide to Reservoir Rock Properties and Fluid Flow

Working Guide to Reservoir Rock Properties and Fluid Flow
Author: Tarek Ahmed
Publsiher: Gulf Professional Publishing
Total Pages: 300
Release: 2009-08-24
Genre: Technology & Engineering
ISBN: 185617901X

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Working Guide to Reservoir Rock Properties and Fluid Flow provides an introduction to the properties of rocks and fluids that are essential in petroleum engineering. The book is organized into three parts. Part 1 discusses the classification of reservoirs and reservoir fluids. Part 2 explains different rock properties, including porosity, saturation, wettability, surface and interfacial tension, permeability, and compressibility. Part 3 presents the mathematical relationships that describe the flow behavior of the reservoir fluids. The primary reservoir characteristics that must be considered include: types of fluids in the reservoir, flow regimes, reservoir geometry, and the number of flowing fluids in the reservoir. Each part concludes with sample problems to test readers knowledge of the topic covered. Critical properties of reservoir rocks Fluid (oil, water, and gas) PVT relationships Methods to calculate hydrocarbons initially in place Dynamic techniques to assess reservoir performance Parameters that impact well/reservoir performance over time

Fluid Phase Behavior for Conventional and Unconventional Oil and Gas Reservoirs

Fluid Phase Behavior for Conventional and Unconventional Oil and Gas Reservoirs
Author: Alireza Bahadori
Publsiher: Gulf Professional Publishing
Total Pages: 554
Release: 2016-11-24
Genre: Technology & Engineering
ISBN: 9780128034460

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Fluid Phase Behavior for Conventional and Unconventional Oil and Gas Reservoirs delivers information on the role of PVT (pressure-volume-temperature) tests/data in various aspects, in particular reserve estimation, reservoir modeling, flow assurance, and enhanced oil recovery for both conventional and unconventional reservoirs. This must-have reference also prepares engineers on the importance of PVT tests, how to evaluate the data, develop an effective management plan for flow assurance, and gain perspective of flow characterization, with a particular focus on shale oil, shale gas, gas hydrates, and tight oil making. This book is a critical resource for today’s reservoir engineer, helping them effectively manage and maximize a company’s oil and gas reservoir assets. Provides tactics on reservoir phase behavior and dynamics with new information on shale oil and gas hydrates Helps readers Improve on the effect of salt concentration and application to C02-Acid Gas Disposal with content on water-hydrocarbon systems Provides practical experience with PVT and tuning of EOS with additional online excel spreadsheet examples

Properties of Petroleum Reservoir Fluids

Properties of Petroleum Reservoir Fluids
Author: Emil J. Burcik
Publsiher: Springer
Total Pages: 236
Release: 1979
Genre: Science
ISBN: UCSD:31822002071041

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Unsteady state Fluid Flow

Unsteady state Fluid Flow
Author: E.J. Hoffman
Publsiher: Elsevier
Total Pages: 473
Release: 1999-07-02
Genre: Science
ISBN: 0080543456

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The ubiquitous examples of unsteady-state fluid flow pertain to the production or depletion of oil and gas reservoirs. After introductory information about petroleum-bearing formations and fields, reservoirs, and geologic codes, empirical methods for correlating and predicting unsteady-state behavior are presented. This is followed by a more theoretical presentation based on the classical partial differential equations for flow through porous media. Whereas these equations can be simplified for the flow of (compressible) fluids, and idealized solutions exist in terms of Fourier series for linear flow and Bessel functions for radial flow, the flow of compressible gases requires computer solutions, read approximations. An analysis of computer solutions indicates, fortuitously, that the unsteady-state behavior can be reproduced by steady-state density or pressure profiles at successive times. This will demark draw down and the transition to long-term depletion for reservoirs with closed outer boundaries. As an alternative, unsteady-state flow may be presented in terms of volume and surface integrals, and the methodology is fully developed with examples furnished. Among other things, permeability and reserves can be estimated from well flow tests. The foregoing leads to an examination of boundary conditions and degrees of freedom and raises arguments that the classical partial differential equations of mathematical physics may not be allowable representations. For so-called open petroleum reservoirs where say water-drive exists, the simplifications based on successive steady-state profiles provide a useful means of representation, which is detailed in the form of material balances. Unsteady-State Fluid Flow provides: • empirical and classical methods for correlating and predicting the unsteady-state behavior of petroleum reservoirs • analysis of unsteady-state behavior, both in terms of the classical partial differential equations, and in terms of volume and surface integrals • simplifications based on successive steady-state profiles which permit application to the depletion of both closed reservoirs and open reservoirs, and serves to distinguish drawdown, transition and long-term depletion performance.

Advanced Reservoir Engineering

Advanced Reservoir Engineering
Author: Tarek Ahmed,Paul McKinney
Publsiher: Elsevier
Total Pages: 421
Release: 2011-03-15
Genre: Technology & Engineering
ISBN: 9780080498836

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Advanced Reservoir Engineering offers the practicing engineer and engineering student a full description, with worked examples, of all of the kinds of reservoir engineering topics that the engineer will use in day-to-day activities. In an industry where there is often a lack of information, this timely volume gives a comprehensive account of the physics of reservoir engineering, a thorough knowledge of which is essential in the petroleum industry for the efficient recovery of hydrocarbons. Chapter one deals exclusively with the theory and practice of transient flow analysis and offers a brief but thorough hands-on guide to gas and oil well testing. Chapter two documents water influx models and their practical applications in conducting comprehensive field studies, widely used throughout the industry. Later chapters include unconventional gas reservoirs and the classical adaptations of the material balance equation. * An essential tool for the petroleum and reservoir engineer, offering information not available anywhere else * Introduces the reader to cutting-edge new developments in Type-Curve Analysis, unconventional gas reservoirs, and gas hydrates * Written by two of the industry's best-known and respected reservoir engineers

The Practice of Reservoir Engineering

The Practice of Reservoir Engineering
Author: L.P. Dake
Publsiher: Elsevier
Total Pages: 556
Release: 2013-10-22
Genre: Technology & Engineering
ISBN: 9781483293837

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The Practice of Reservoir Engineering has been written for those in the oil industry requiring a working knowledge of how the complex subject of hydrocarbon reservoir engineering can be applied in the field in a practical manner. The book is a simple statement of how to do the job and is particularly suitable for reservoir/production engineers and is illustrated with 27 examples and exercises based mainly on actual field developments. It will also be useful for those associated with the subject of hydrocarbon recovery. Geoscientists, petrophysicists and those involved in the management of oil and gas fields will also find it particularly relevant. The new http://www.elsevier.nl/locate/isbn/0444506705 Practice of Reservoir Engineering Revised Edition will be available soon.

Multiphase Fluid Flow in Porous and Fractured Reservoirs

Multiphase Fluid Flow in Porous and Fractured Reservoirs
Author: Yu-Shu Wu
Publsiher: Gulf Professional Publishing
Total Pages: 418
Release: 2015-09-23
Genre: Technology & Engineering
ISBN: 9780128039113

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Multiphase Fluid Flow in Porous and Fractured Reservoirs discusses the process of modeling fluid flow in petroleum and natural gas reservoirs, a practice that has become increasingly complex thanks to multiple fractures in horizontal drilling and the discovery of more unconventional reservoirs and resources. The book updates the reservoir engineer of today with the latest developments in reservoir simulation by combining a powerhouse of theory, analytical, and numerical methods to create stronger verification and validation modeling methods, ultimately improving recovery in stagnant and complex reservoirs. Going beyond the standard topics in past literature, coverage includes well treatment, Non-Newtonian fluids and rheological models, multiphase fluid coupled with geomechanics in reservoirs, and modeling applications for unconventional petroleum resources. The book equips today’s reservoir engineer and modeler with the most relevant tools and knowledge to establish and solidify stronger oil and gas recovery. Delivers updates on recent developments in reservoir simulation such as modeling approaches for multiphase flow simulation of fractured media and unconventional reservoirs Explains analytical solutions and approaches as well as applications to modeling verification for today’s reservoir problems, such as evaluating saturation and pressure profiles and recovery factors or displacement efficiency Utilize practical codes and programs featured from online companion website