Multiphase Pump Performance Assessment

The Oil and Gas industry has been using cutting edge technologies to increase the production for decades. For the exact same purpose Shell is planning to deploy two multiphase pumps into the Draugen field, located in the Norwegian Sea. A multiphase pump can increase the pressure of a mixture of liqu...

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Main Author: Tang, Yu (author)
Other Authors: Gangoli Rao, Arvind (mentor), Pecnik, Rene (mentor), Pini, Matteo (mentor), Delft University of Technology (degree granting institution)
Format: Master Thesis
Language:English
Published: 2015
Subjects:
Online Access:http://resolver.tudelft.nl/uuid:a9264920-daf8-469c-a512-a5891ccce301
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spelling fttudelft:oai:tudelft.nl:uuid:a9264920-daf8-469c-a512-a5891ccce301 2023-07-30T04:05:55+02:00 Multiphase Pump Performance Assessment Tang, Yu (author) Gangoli Rao, Arvind (mentor) Pecnik, Rene (mentor) Pini, Matteo (mentor) Delft University of Technology (degree granting institution) 2015-01-20 http://resolver.tudelft.nl/uuid:a9264920-daf8-469c-a512-a5891ccce301 en eng http://resolver.tudelft.nl/uuid:a9264920-daf8-469c-a512-a5891ccce301 © 2015 Yu Tang master thesis 2015 fttudelft 2023-07-08T20:29:30Z The Oil and Gas industry has been using cutting edge technologies to increase the production for decades. For the exact same purpose Shell is planning to deploy two multiphase pumps into the Draugen field, located in the Norwegian Sea. A multiphase pump can increase the pressure of a mixture of liquid and gas simultaneously. It is very desirable, since the content of an exploitable reservoir is frequently a mixture of oil and gas. In order to increase the reliability and effciency of such pumps, a multiphase performance model will used to continuously monitor the pump performance during its operation. Unfortunately, a multiphase pump performance model has not yet been developed within Shell Global Solutions. The purpose of this thesis is to investigate the key parameters which influence the pump performance and using this knowledge to create a multiphase performance model. Aerospace Engineering Master Thesis Norwegian Sea Delft University of Technology: Institutional Repository Norwegian Sea
institution Open Polar
collection Delft University of Technology: Institutional Repository
op_collection_id fttudelft
language English
description The Oil and Gas industry has been using cutting edge technologies to increase the production for decades. For the exact same purpose Shell is planning to deploy two multiphase pumps into the Draugen field, located in the Norwegian Sea. A multiphase pump can increase the pressure of a mixture of liquid and gas simultaneously. It is very desirable, since the content of an exploitable reservoir is frequently a mixture of oil and gas. In order to increase the reliability and effciency of such pumps, a multiphase performance model will used to continuously monitor the pump performance during its operation. Unfortunately, a multiphase pump performance model has not yet been developed within Shell Global Solutions. The purpose of this thesis is to investigate the key parameters which influence the pump performance and using this knowledge to create a multiphase performance model. Aerospace Engineering
author2 Gangoli Rao, Arvind (mentor)
Pecnik, Rene (mentor)
Pini, Matteo (mentor)
Delft University of Technology (degree granting institution)
format Master Thesis
author Tang, Yu (author)
spellingShingle Tang, Yu (author)
Multiphase Pump Performance Assessment
author_facet Tang, Yu (author)
author_sort Tang, Yu (author)
title Multiphase Pump Performance Assessment
title_short Multiphase Pump Performance Assessment
title_full Multiphase Pump Performance Assessment
title_fullStr Multiphase Pump Performance Assessment
title_full_unstemmed Multiphase Pump Performance Assessment
title_sort multiphase pump performance assessment
publishDate 2015
url http://resolver.tudelft.nl/uuid:a9264920-daf8-469c-a512-a5891ccce301
geographic Norwegian Sea
geographic_facet Norwegian Sea
genre Norwegian Sea
genre_facet Norwegian Sea
op_relation http://resolver.tudelft.nl/uuid:a9264920-daf8-469c-a512-a5891ccce301
op_rights © 2015 Yu Tang
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