Vis enkel innførsel

dc.contributor.authorRasmussen, Sveinung Fuglseth
dc.date.accessioned2012-10-12T08:12:01Z
dc.date.available2012-10-12T08:12:01Z
dc.date.issued2012
dc.identifier.urihttp://hdl.handle.net/11250/182872
dc.descriptionMaster's thesis in Offshore technologyno_NO
dc.description.abstractCustomized production and storage vessels, known as FPSO (Floating Production, Storage & Offloading vessel), are increasingly used in offshore oil and gas production due to their flexibility and ability to produce in deep water while exposed to severe weather conditions. With help from a dynamic positioning system and mooring system, the vessels can more or less keep their position through harsh storms. However, the vessels will have considerably larger movement than a rigidly fixed oil platform. One of many challenges is to avoid environmental loads being transferred to vulnerable equipment. Even smaller positioning offsets can cause serious consequences to the risers. On most FPSOs, bend stiffeners are used to reduce bending forces at the interference point where the risers protrude from the turret on the way down to the seabed. The bend stiffener has a potential to fail and cause serious damage to the riser as they experience large bending forces in unfavorable weather conditions. This study has its background from industry incidents where the bend stiffener has loosened without any real time knowledge of the failure. Thus, the purpose of this thesis has been to evaluate the possibility of an online monitoring device to provide a real time image of the riser positions. By doing so, the riser movement pattern can be recorded. Consequently, if an abnormal movement is recorded, the bend stiffener has most likely failed. The main focus for this master thesis was to come up with the design of a deployment system to meet the given requirements of providing an online riser monitoring solution for BP’s Skarv FPSO. The thesis will evaluate different design alternatives and investigate the environmental loads the system will experience. Structural response and capacity analysis will be carried out for the important components to make sure the deployment system is suitable for further development.no_NO
dc.language.isoengno_NO
dc.publisherUniversity of Stavanger, Norwayno_NO
dc.relation.ispartofseriesMasteroppgave/UIS-TN-IKM/2012;
dc.subjectriser monitoringno_NO
dc.subjectdeployment systemno_NO
dc.subjectoffshore teknologino_NO
dc.subjectundervannsteknologino_NO
dc.titleOnline riser monitoring system for Skarv FPSOno_NO
dc.typeMaster thesisno_NO
dc.subject.nsiVDP::Technology: 500::Marine technology: 580no_NO
dc.source.pagenumber129no_NO


Tilhørende fil(er)

Thumbnail

Denne innførselen finnes i følgende samling(er)

  • Studentoppgaver (TN-IKM / TN-IMBM) [1213]
    Master- og bacheloroppgaver i Konstruksjoner og materialer / Maskin, bygg og materialteknologi (maskinkonstruksjoner, byggkonstruksjoner og energiteknologi) / Masteroppgaver i Offshore teknologi: industriell teknologi og driftsledelse - Offshore technology: industrial Asset management / Masteroppgaver i Offshoreteknologi : offshore systemer (konstruksjonsteknikk og marin- og undervannsteknologi-subsea technology)

Vis enkel innførsel