Fleet sizing decision support model applied to pipelines decommissioning

Author:

Ferreira Filho Virgílio José MartinsORCID,Logsdon Lucia Balsemão FurtadoORCID,Ribas Paulo CesarORCID

Publisher

Instituto Brasileiro de Petroleo e Gas

Reference25 articles.

1. Anderson, J. M. (2002). Decommissioning pipelines and subsea equipment: Legislative issues and decommissioning processes. Society for Underwater Technology, 25(2), 105–111. https://doi.org/10.3723/175605402783219154

2. Burke, J., & Stokes, A. (2015). Preparation for Cost Effective Decommissioning and Abandonment of Subsea Pipelines (Vol. 1, p. 13). Presented at the SPE Offshore Europe Conference and Exhibition, Aberdeen, Scotland, UK. Retrieved from https://www.onepetro.org/conference-paper/SPE-175426-MS

3. Chaurasia, S. N., & Kim, J. H. (2019). An evolutionary algorithm based hyper-heuristic framework for the set packing problem. Information Sciences, 505(1), 1–31. https://doi.org/10.1016/j.ins.2019.07.073

4. Daleel Oil ang Gas Supply Chain Portal. (2020). Pipe Laying Vessels. Middle East: Daleel. Retrieved from https://www.scmdaleel.com/category/pipe-laying- vessels/57

5. Ekins, P., Vanner, R., & Firebrace, J. (2005). Decommissioning of Offshore Oil and Gas Facilities: Decommissioning Scenarios: A comparative Assessment Using Flow Analysis. London: Policy Studies Institute. Retrieved from https://d1wqtxts1xzle7.cloudfront.net/50778458/Decommissioning-Working_paper.pdf?1481180159=&response-content-disposition=inline%3B+filename%3DDECOMMISSIONING_OF_OFFSHORE_OIL_AND_GAS.pdf&Expires=1595126814&Signature=YNG9-1sRY-VhDRNviQ~5KzfUShHhKWJ5ntF5o6Pz1PVfxA44EhSEJhLYMcizgqIzLtvnurWOg1wi0SsyC5OrvXWuvPVhz3qeAU7-DzktJhWE9-978xIcHOCvHHOgfHULBbIHuyEugNVToQt9O3~aUKcIIWKz7j7y4H4BVzfVSIAdxQWDe27z5dA7LWXOnqtmqy8v8OFfwxVlX6emfnZoarWvDLdlpkoe6H3SznNTQ6g1nRGKwcxnW9Bv8z~e1Ql3dbzh-AyjMH3ctLqwnExRVtmhsdS6KomCFZoGHiIqg8f5epv5pUpev9FQPGnmkPBUswwFwPALKwpS6aD38MKNbw__&Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA

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