Affiliation:
1. School of Engineering and Physical Sciences, Heriot-Watt University, Edinburgh, UK
2. School of Mechanical and Systems Engineering, Newcastle University, Newcastle Upon Tyne, UK
Abstract
Equipment destined for use in oil exploration and production must withstand high pressures and temperatures and the corrosive nature of the produced fluids. Currently, pipework destined for this harsh environment is manufactured from duplex or superduplex steels or, in the most challenging cases, from carbon steel overlain with a layer of nickel alloy. These materials are expensive and not always readily available. A recent paper [1] considered several alternative means of conferring corrosion resistance on high-pressure pipework featuring complex three-dimensional geometry. The study covered both metallic and polymer solutions. The principal conclusion of this study was that there might be opportunities for adopting some form of polymer liner as a cost-effective alternative to metallic liners. The present paper takes a detailed look at the polymer solutions currently available, makes a critical appraisal of the viability, both technical and commercial, of the alternatives, and concludes by suggesting a test programme that would qualify any polymer solution successfully completing it.
Subject
Industrial and Manufacturing Engineering,Mechanical Engineering
Reference11 articles.
1. State-of-the-art production processes for convoluted, corrosion-resistant, high-pressure oilfield pipework
2. Sletfjerding E., Gudmundsson J. S., Sjøen K. Friction factor in high pressure gas pipelines in the North Sea. In Proceedings of the 2000 SPE/CERI Gas Technology Symposium, Calgary, Canada, April 2000.
3. Kut S. Current status of internal coating of gas pipelines — review benefits. In Proceedings of International Conference on Corrosion Prevention of the European Gas Grid System, Amsterdam, Holland, May 1995.
4. Copon Product Data Sheet: Copon Hycote 165HT, 2005.
5. Introduction to Xylan formulations, Whitford Worldwide, February 2005.
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1. Experimental and numerical study of standard impact tests on polypropylene pipes with brittle behaviour;Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture;2012-10-08