Trends in Oil and Gas Corrosion Research and Technologies

Production and Transmission

Specificaties
Gebonden, blz. | Engels
Elsevier Science | e druk, 2017
ISBN13: 9780081011058
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Elsevier Science e druk, 2017 9780081011058
€ 361,00
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Samenvatting

Trends in Oil and Gas Corrosion Research and Technologies: Production and Transmission delivers the most up-to-date and highly multidisciplinary reference available to identify emerging developments, fundamental mechanisms and the technologies necessary in one unified source.

Starting with a brief explanation on corrosion management that also addresses today’s most challenging issues for oil and gas production and transmission operations, the book dives into the latest advances in microbiology-influenced corrosion and other corrosion threats, such as stress corrosion cracking and hydrogen damage just to name a few. In addition, it covers testing and monitoring techniques, such as molecular microbiology and online monitoring for surface and subsurface facilities, mitigation tools, including coatings, nano-packaged biocides, modeling and prediction, cathodic protection and new steels and non-metallics.

Rounding out with an extensive glossary and list of abbreviations, the book equips upstream and midstream corrosion professionals in the oil and gas industry with the most advanced collection of topics and solutions to responsibly help solve today’s oil and gas corrosion challenges.

Specificaties

ISBN13:9780081011058
Taal:Engels
Bindwijze:Gebonden

Inhoudsopgave

<p>PART I: Corrosion in the Oil and Gas Upstream and Mid-stream: Introduction<br>1. Cost of corrosion <br>2. Petroleum fluids properties and production schemes: Effect on Corrosion <br>3. Corrosion Management </p> <p>Part II: Corrosion In Oil and Gas Production and Transmission: Current Knowledge and Challenges<br>4. Downhole Corrosion<br>5. Onshore Corrosion in Surface Production and Transmission Sectors- Current Knowledge and Challenges</p> <p>Part III: Corrosion Mechanisms: Current Knowledge, Gaps and Future Research<br>6. Sour Corrosion   <br>7. CO2 Corrosion of mild steel <br>8. Microbiology-Influenced Corrosion (MIC) <br>9. Pitting Corrosion<br>10. Corrosion of Weldments  <br>11. Sulfide Stress Cracking <br>12. Stress Corrosion Cracking <br>13. Hydrogen Damage<br>14. Erosion-corrosion <br>15. Under Deposit Corrosion <br>16. Top-of-the-Line corrosion <br>17. Corrosion Under Insulation<br>18. Corrosion and Scale at High Pressure High Temperature <br>Part IV: Advancements in Testing and Monitoring Technologies<br>19. Corrosion Inhibitors – Advancements in Testing<br>20. Advances in Monitoring Technologies for Corrosion Inhibitor Performance<br>21. Advances in Testing and Monitoring of Biocides in Oil and Gas<br>22. Molecular Microbiology Techniques </p> <p>Part V: Advancements in Corrosion Mitigation <br>23. Biocides Overview and Applications in Petroleum Microbiology.<br>24. Pipeline Coatings<br>25. Advancements in Cathodic Protection of Offshore Structures <br>26. New Steels and Corrosion Resistant Alloys  <br>27. Non-metallics applications in oil and gas production (pipes, liners, rehabilitations)  </p> <p>Part VI:  Advancements in Modeling and Prediction<br>28. Pitting corrosion <br>29. Top-of-the-Line corrosion<br>30. Modeling and Prediction of Stress Corrosion Cracking of Pipeline Steels<br>31. Mechanistic Modeling of Erosion-Corrosion for Carbon Steel <br>32. Residual Life Predictions - Extending Service Life<br>33. Non-metallic Materials - Coupling of Multiphysics for Aging Rate Prediction<br>34. Mathematical Modeling of Uniform CO2 Corrosion</p> <p>GLOSSARY<br>Part I: Abbreviations<br></p>
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        Trends in Oil and Gas Corrosion Research and Technologies