The proven efficiency of epoxy flow coats for the protection of gas transmission pipelines

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00258_2015_04_04
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The concept of internally lining gas pipelines – known as internal flow coating – was first developed in the 1950s to counter the adverse effects on pipeline capacity, operation and pumping costs caused by the rough internal surface of steel pipes and the build-up of deposits and corrosion products. This paper reviews the benefits of considering an internal lining for gas transmission pipelines, and the relationship between the internal surface roughness, the pressure drop across the pipeline and the maximum flow rate of gas through the pipeline. This paper also outlines the benefits of internal flow coatings and the developments that have been made over recent decades in terms of coating materials, taking into account new challenges associated with gas production and transmission, and how they meet the current requirements of international standards and specifications.
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Authors Pascal Collet / Bernard Chizat
Publishing Date 1 Apr 2015
Format PDF
Zeitschrift gas for energy - Ausgabe 04 2015
Publisher DIV Deutscher Industrieverlag GmbH
Language English
Title The proven efficiency of epoxy flow coats for the protection of gas transmission pipelines
Description The concept of internally lining gas pipelines – known as internal flow coating – was first developed in the 1950s to counter the adverse effects on pipeline capacity, operation and pumping costs caused by the rough internal surface of steel pipes and the build-up of deposits and corrosion products. This paper reviews the benefits of considering an internal lining for gas transmission pipelines, and the relationship between the internal surface roughness, the pressure drop across the pipeline and the maximum flow rate of gas through the pipeline. This paper also outlines the benefits of internal flow coatings and the developments that have been made over recent decades in terms of coating materials, taking into account new challenges associated with gas production and transmission, and how they meet the current requirements of international standards and specifications.
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