Applied Petroleum Reservoir Engineering

Applied Petroleum Reservoir Engineering

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Applied Petroleum Reservoir Engineering

The Definitive Guide to Petroleum Reservoir Engineering–Now Fully Updated to Reflect New Technologies and Easier Calculation Methods

 

Craft and Hawkins’ classic introduction to petroleum reservoir engineering is now fully updated for new technologies and methods, preparing students and practitioners to succeed in the modern industry. In Applied Petroleum Reservoir Engineering, Third Edition, renowned expert Ronald E. Terry and project engineer J. Brandon Rogers review the history of reservoir engineering, define key terms, carefully introduce the material balance approach, and show how to apply it with many types of reservoirs.

 

Next, they introduce key principles of fluid flow, water influx, and advanced recovery (including hydrofracturing). Throughout, they present field examples demonstrating the use of material balance and history matching to predict reservoir performance. For the first time, this edition relies on Microsoft Excel with VBA to make calculations easier and more intuitive.

 

This edition features

  • Extensive updates to reflect modern practices and technologies, including gas condensate reservoirs, water flooding, and enhanced oil recovery
  • Clearer, more complete introductions to vocabulary and concepts– including a more extensive glossary
  • Several complete application examples, including single-phase gas, gas-condensate, undersaturated oil, and saturated oil reservoirs
  • Calculation examples using Microsoft Excel with VBA throughout
  • Many new example and practice problems using actual well data
  • A revamped history-matching case study project that integrates key topics and asks readers to predict future well production

 

Technical Specifications

Country
USA
Binding
Kindle Edition
Edition
3
EISBN
9780133155617
Format
Kindle eBook
Label
Prentice Hall
Manufacturer
Prentice Hall
NumberOfPages
528
PublicationDate
2014-08-02
Publisher
Prentice Hall
ReleaseDate
2014-08-02
Studio
Prentice Hall