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dc.contributor.otherTurbomachinery Symposium (45th : 2016)
dc.creatorPatwardhan, Sameer S.
dc.creatorWeatherwax, Mark
dc.creatorMeher-Homji, Feroze
dc.creatorCappetti, David
dc.creatorMusardo, Antonio
dc.creatorIannuzzi, Gianni
dc.date.accessioned2017-03-14T21:29:12Z
dc.date.available2017-03-14T21:29:12Z
dc.date.issued2016
dc.identifier.urihttps://hdl.handle.net/1969.1/159792
dc.descriptionLectureen
dc.description.abstractChevron Australia, as part of the Wheatstone Project, constructed a two train liquefied natural gas (LNG) facility and domestic gas plant at the Ashburton North Strategic Industrial Area, 12 kilometers west of Onslow on the Pilbara coast of Western Australia. A driver selection study was performed based on the ConocoPhillips Optimized Cascade® natural gas liquefaction process. Details of this driver selection study are covered by Shah et al [1]. This driver study evaluated a variety of project-specific parameters and resulted in the selection of a General Electric LM6000 PF aeroderivative gas turbine. The final decision to use the LM6000 engine was based on a detailed technology qualification program. Following the completion of the technology qualification, a detailed risk mitigation plan was developed. The plan was incorporated into the purchase order of the equipment and, subsequently, incorporated into the equipment manufacturer’s Failure Mode Effects Analysis (FMEA) process. The risk mitigation plan highlighted extensive testing requirements during the full-load, full-speed (FLFS) string test. This paper covers the details of the FLFS testing that was performed in the fourth quarter of 2013.en
dc.format.mediumElectronicen
dc.format.mimetypeapplication/pdf
dc.language.isoen
dc.publisherTurbomachinery Laboratories, Texas A&M Engineering Experiment Station
dc.relation.ispartofProceedings of the 45th Turbomachinery Symposiumen
dc.subject.lcshTurbomachinesen
dc.titleFull Speed String Test On LM6000PF Gas Turbine Driven Refrigeration Compressorsen
dc.type.genrePresentationen
dc.type.materialTexten
dc.format.digitalOriginborn digitalen
dc.identifier.doihttps://doi.org/10.21423/R12018


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