DocumentCode
159237
Title
Building the world´s longest heated pipeline a technology application review
Author
Chakkalakal, Franco ; Hamill, Marty ; Beres, Jim
Author_Institution
Pentair Thermal Manage., Houston, TX, USA
fYear
2014
fDate
8-10 Sept. 2014
Firstpage
481
Lastpage
489
Abstract
The world depends on oil for much of its energy needs and global demand for oil is forecast to increase significantly in the future as countries such as China and India continue to develop [1]. Much of the world´s conventional or “easy” oil sources have already been located and developed, so oil companies are increasingly turning to more difficult non-conventional oil sources which require innovative technology to be developed successfully. Often it is the physical properties of the oil that define it as non-conventional, such as being unusually heavy or viscous or containing a high percentage of wax, presenting difficult flow assurance and transportation problems that must be overcome. This paper describes the development of an Indian oil field containing an oil so waxy it is solid at ambient temperatures, requiring the construction of the world´s longest heated pipeline to transport the waxy crude over 600 km from a remote desert location to a coastal refining hub. The topics covered include the evaluation of various transportation solutions, selection of a skin effect heating system, thermal insulation, power sources and distribution, challenges associated with the design and construction, and lessons learnt that could enhance the safety and reliability of future projects.
Keywords
demand forecasting; globalisation; oil technology; pipelines; reliability; safety; Indian oil field; global demand; heated pipeline; oil companies; oil sources; reliability; safety; skin effect heating system; Insulation; Land surface temperature; Materials; Pipelines; Resistance heating; Skin effect; Cairn India; Mangala Development Pipeline Project; flow assurance; heated pipeline; insulated pipeline; skin effect; waxy crude;
fLanguage
English
Publisher
ieee
Conference_Titel
Petroleum and Chemical Industry Technical Conference (PCIC), 2014 IEEE
Conference_Location
San Francisco, CA
ISSN
0090-3507
Print_ISBN
978-1-4799-3054-8
Type
conf
DOI
10.1109/PCICon.2014.6961915
Filename
6961915
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