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- W1973753989 abstract "Abstract Long subsea tie-backs are increasingly considered for offshore step-out field developments, which often have intermediate or smaller reserves and complex flow assurances issues. In such cases, the flowline architecture either faces prohibitive cost for insulation requirements or, curtailment of prospect development due to the physical limits of insulation systems being exceeded. Hence, in addition to the passive thermal insulation, the heat losses must be compensated by active heating. The Total Group has identified, beside other available technologies, the Electrical Trace Heating of subsea pipelines as a promising solution, with higher energy efficiency, and ability to be energized from host platform with a limited impact, thus leading to economic optimisation. During the last decade, anticipating the interest of the industry, Technip have run a comprehensive R&D programme on an Electrical Trace Heating solution for reeled Pipe-in-Pipe (ETH-PiP) (Denniel and Laouir, 2001 and Denniel et al, 2005) and have joined Total’s qualification programme in 2008. After more than two years of successful qualification (Denniel et al 2010 and de Naurois, et al, 2011), Total and its partners have considered the technology mature enough to allow the next step of the development: Industrialization. Located in the Northern North Sea sector, the Islay Project, recently awarded as a full EPCI contract to Technip, has been selected as a pilot project for this technology. Whilst ETH-PiP is not the primary hydrate mitigation strategy - this is achieved by an innovative seabed conditioning strategy seeking to minimise the methanol injection requirements - Islay is an opportunity to perform full scale offshore testing and can be considered as the final qualification process for future large scale projects in both the North Sea and worldwide. This paper details the industrialization process undertaken for ETH-PiP as part of the overall Islay Project delivery. Specific attention is drawn to the concept assessment, detailed design, project trials, assembly and offshore installation sequence to be carried out through 2010 and 2011." @default.
- W1973753989 created "2016-06-24" @default.
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- W1973753989 date "2011-09-06" @default.
- W1973753989 modified "2023-09-23" @default.
- W1973753989 title "Industrialization of Electrically Trace Heated Pipe-in-Pipe (ETH-PiP)" @default.
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- W1973753989 doi "https://doi.org/10.2118/145167-ms" @default.
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