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dc.contributorAsia Turbomachinery & Pump Symposium (1st : 2016)
dc.creatorHata, Satoshi
dc.creatorIkeno, Kyoichi
dc.creatorTasaki, Akinori
dc.creatorWalton, Matt
dc.creatorJain, Abhay
dc.date.accessioned2017-05-04T12:49:21Z
dc.date.available2017-05-04T12:49:21Z
dc.date.issued2016
dc.identifier.urihttps://hdl.handle.net/1969.1/160303
dc.descriptionTutorialen
dc.description.abstractTutorial 9: Changing markets, industry demands for increased efficiency and long term operation, and availability of new technology have all contributed in development of more efficient and reliable turbomachines. The authors present ethylene plants trends, demonstrate the challenges faced by the turbomachinery equipment manufacturers and highlight various advancements in the turbomachinery technology. History maps are introduced for design advancements, verification tests, and application results in terms of transient fluid dynamics, thermodynamics, rotor dynamics, and blade vibration strength evaluation. In addition, after recognizing the need for long term operation and related typical damage and deterioration modes, the authors explain various practical technologies (such as effective on-line washing, flow path surface treatment, combination of anti-corrosion and erosion prevention, stage performance enhancement by partial component replacement, NDE techniques for both compressors and steam turbines, and a unique casing replacement technique on the same footprint for increasing capacity) used to provide more efficient and reliable machines.en
dc.format.mediumElectronicen
dc.format.mimetypeapplication/pdf
dc.languageen
dc.publisherTurbomachinery Laboratories, Texas A&M Engineering Experiment Station
dc.relation.ispartofAsia Turbomachinery & Pump Symposium. 2016 Proceedings.en
dc.subject.lcshTurbomachinesen
dc.subject.lcshPumping machineryen
dc.titleTechnical Challenges for Compressors and Steam Turbines for Efficient and Sustainable Operation in Mega Ethylene Plantsen
dc.type.materialTexten
dc.identifier.doihttps://doi.org/10.21423/R1CT33


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