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Principles of Applied Reservoir Simulation (3rd Edn)

Principles of Applied Reservoir Simulation (3rd Edn)

Principles of Applied Reservoir Simulation (3rd Edn)
Stock photo: cover may vary

Principles of Applied Reservoir Simulation (3rd Edn) Hardback - 2006 - 3rd Edition

by Fanchi, John R

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  • Hardback

Description

Gulf Professional Publishing, 2006. This is an ex-library book and may have the usual library/used-book markings inside.This book has hardback covers. In poor condition, suitable as a reading copy. No dust jacket. Please note the Image in this listing is a stock photo and may not match the covers of the actual item,1050grams, ISBN:9780750679336
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Details

  • Title Principles of Applied Reservoir Simulation (3rd Edn)
  • Author Fanchi, John R
  • Binding Hardback
  • Edition number 3rd
  • Edition 3
  • Pages 536
  • Volumes 1
  • Language ENG
  • Publisher Gulf Professional Publishing, Oxford
  • Publication date 2006
  • Illustrated Yes
  • Bookseller's Inventory # 9786276
  • ISBN 9780750679336 / 0750679336
  • Weight 2.14 lbs (0.97 kg)
  • Dimensions 9 x 6 x 1.13 in (22.86 x 15.24 x 2.87 cm)
  • Category Technology & Industrial Arts
  • Library of Congress subjects Petroleum - Geology - Mathematical models, Oil fields - Computer simulation
  • Dewey Decimal Code 622.338

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Reader reviews for Principles of Applied Reservoir Simulation (3rd Edn)

From the publisher

The hottest, most important topic to reservoir engineers is reservoir simulation. Reservoir simulations are literally pictures of what a reservoir of oil or gas looks, or should look, like under the surface of the earth. A multitude of tools is available to the engineer to generate these pictures, and, essentially, the more accurate the picture, the easier the engineer can get the product out of the ground, and, thus, the more profitable the well will be.

Completely revised and updated throughout, this new edition of a GPP industry standard has completely new sections on coalbed methane, CO2 sequestration (important for environmental concerns), Co2 Flood, more sophisticated petrophysical models for geoscientists, examples of subsidence, additional geomechanical calculations, and much more. What makes this book so different and valuable to the engineer is the accompanying software, used by reservoir engineers all over the world every day. The new software, IFLO (replacing WINB4D, in previous editions), is a simulator that the engineer can easily install in a Windows operating environment. IFLO generates simulations of how the well can be tapped and feeds this to the engineer in dynamic 3D perspective. This completely new software is much more functional, with better graphics and more scenarios from which the engineer can generate simulations.

This book and software helps the reservoir engineer do his or her job on a daily basis, better, more economically, and more efficiently. Without simulations, the reservoir engineer would not be able to do his or her job at all, and the technology available in this product is far superior to most companies' internal simulation software. It is also much less expensive ($89.95 versus hundreds or even thousands of dollars) than off-the-shelf packages available from independent software companies servicing the oil and gas industry. It is, however, just as, or more accurate than these overpriced competitors, having been created by a high-profile industry expert and having been used by engineers in the real world with successful and profitable results.

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