Product Engineering Assessment of Subsea Intervention Equipment Using SWARA-MOORA-3NAG Method

Oilfields must increase their production due to the current price of oil barrels. The sale of these oilfields by big companies enabled new companies to enter the exploration and production segment of brownfields to increase oil and gas production through subsea intervention projects. However, these...

Full description

Bibliographic Details
Main Authors: Pedro Gall Fernandes, Osvaldo Luiz Gonçalves Quelhas, Carlos Francisco Simões Gomes, Enderson Luiz Pereira Júnior, Ricardo Luiz Fernandes Bella, Claudio de Souza Rocha Junior, Ruan Carlos Alves Pereira, Marcio Pereira Basilio, Marcos dos Santos
Format: Article
Language:English
Published: MDPI AG 2023-02-01
Series:Systems
Subjects:
Online Access:https://www.mdpi.com/2079-8954/11/3/125
_version_ 1797608814930821120
author Pedro Gall Fernandes
Osvaldo Luiz Gonçalves Quelhas
Carlos Francisco Simões Gomes
Enderson Luiz Pereira Júnior
Ricardo Luiz Fernandes Bella
Claudio de Souza Rocha Junior
Ruan Carlos Alves Pereira
Marcio Pereira Basilio
Marcos dos Santos
author_facet Pedro Gall Fernandes
Osvaldo Luiz Gonçalves Quelhas
Carlos Francisco Simões Gomes
Enderson Luiz Pereira Júnior
Ricardo Luiz Fernandes Bella
Claudio de Souza Rocha Junior
Ruan Carlos Alves Pereira
Marcio Pereira Basilio
Marcos dos Santos
author_sort Pedro Gall Fernandes
collection DOAJ
description Oilfields must increase their production due to the current price of oil barrels. The sale of these oilfields by big companies enabled new companies to enter the exploration and production segment of brownfields to increase oil and gas production through subsea intervention projects. However, these projects require specific product development that involves technical requirements that the engineering department must analyze. This research aims to apply the SWARA-MOORA-3NAG multicriteria decision analysis (MCDA) method in analyzing the technical proposals of subsea intervention equipment for ordering suppliers according to the engineering requirements defined at the initial stage of the projects of an oil and gas company. The research methodology was divided into five stages: (1) identification of the problem through observation of the current process and interviews with engineers; (2) data collection through bibliographic research in the Scopus database; (3) problem modeling; (4) proposition of the solution with the application of the SWARA-MOORA-3NAG method; and (5) analysis of the results found. The application of the SWARA-MOORA-3NAG method brought a new ordering of suppliers to the analyzed case, enabling comparison between the method previously used by the engineering department and the method proposed by this research, emphasizing that the MCDA methods can be inserted into the analysis processes of technical proposals in the engineering department of the company analyzed.
first_indexed 2024-03-11T05:49:53Z
format Article
id doaj.art-11378baf0d3b4856b18a39f069ffb556
institution Directory Open Access Journal
issn 2079-8954
language English
last_indexed 2024-03-11T05:49:53Z
publishDate 2023-02-01
publisher MDPI AG
record_format Article
series Systems
spelling doaj.art-11378baf0d3b4856b18a39f069ffb5562023-11-17T14:11:03ZengMDPI AGSystems2079-89542023-02-0111312510.3390/systems11030125Product Engineering Assessment of Subsea Intervention Equipment Using SWARA-MOORA-3NAG MethodPedro Gall Fernandes0Osvaldo Luiz Gonçalves Quelhas1Carlos Francisco Simões Gomes2Enderson Luiz Pereira Júnior3Ricardo Luiz Fernandes Bella4Claudio de Souza Rocha Junior5Ruan Carlos Alves Pereira6Marcio Pereira Basilio7Marcos dos Santos8Department of Production Engineering, Faculty of Engineering, Praia Vermelha Campus, Federal Fluminense University, Niteroi 24210-240, BrazilDepartment of Production Engineering, Faculty of Engineering, Praia Vermelha Campus, Federal Fluminense University, Niteroi 24210-240, BrazilDepartment of Production Engineering, Faculty of Engineering, Praia Vermelha Campus, Federal Fluminense University, Niteroi 24210-240, BrazilDepartment of Production Engineering, Faculty of Engineering, Praia Vermelha Campus, Federal Fluminense University, Niteroi 24210-240, BrazilDepartment of Production Engineering, Faculty of Engineering, Praia Vermelha Campus, Federal Fluminense University, Niteroi 24210-240, BrazilDepartment of Production Engineering, Faculty of Engineering, Praia Vermelha Campus, Federal Fluminense University, Niteroi 24210-240, BrazilDepartment of Production Engineering, Faculty of Engineering, Praia Vermelha Campus, Federal Fluminense University, Niteroi 24210-240, BrazilMilitary Police of the Rio de Janeiro, Rio de Janeiro 21941-901, BrazilMilitary Institute of Engineering, Rio de Janeiro 21941-901, BrazilOilfields must increase their production due to the current price of oil barrels. The sale of these oilfields by big companies enabled new companies to enter the exploration and production segment of brownfields to increase oil and gas production through subsea intervention projects. However, these projects require specific product development that involves technical requirements that the engineering department must analyze. This research aims to apply the SWARA-MOORA-3NAG multicriteria decision analysis (MCDA) method in analyzing the technical proposals of subsea intervention equipment for ordering suppliers according to the engineering requirements defined at the initial stage of the projects of an oil and gas company. The research methodology was divided into five stages: (1) identification of the problem through observation of the current process and interviews with engineers; (2) data collection through bibliographic research in the Scopus database; (3) problem modeling; (4) proposition of the solution with the application of the SWARA-MOORA-3NAG method; and (5) analysis of the results found. The application of the SWARA-MOORA-3NAG method brought a new ordering of suppliers to the analyzed case, enabling comparison between the method previously used by the engineering department and the method proposed by this research, emphasizing that the MCDA methods can be inserted into the analysis processes of technical proposals in the engineering department of the company analyzed.https://www.mdpi.com/2079-8954/11/3/125engineering requirementsoil and gasdecision makingMCDASWARA-MOORA-3NAGproduct development
spellingShingle Pedro Gall Fernandes
Osvaldo Luiz Gonçalves Quelhas
Carlos Francisco Simões Gomes
Enderson Luiz Pereira Júnior
Ricardo Luiz Fernandes Bella
Claudio de Souza Rocha Junior
Ruan Carlos Alves Pereira
Marcio Pereira Basilio
Marcos dos Santos
Product Engineering Assessment of Subsea Intervention Equipment Using SWARA-MOORA-3NAG Method
Systems
engineering requirements
oil and gas
decision making
MCDA
SWARA-MOORA-3NAG
product development
title Product Engineering Assessment of Subsea Intervention Equipment Using SWARA-MOORA-3NAG Method
title_full Product Engineering Assessment of Subsea Intervention Equipment Using SWARA-MOORA-3NAG Method
title_fullStr Product Engineering Assessment of Subsea Intervention Equipment Using SWARA-MOORA-3NAG Method
title_full_unstemmed Product Engineering Assessment of Subsea Intervention Equipment Using SWARA-MOORA-3NAG Method
title_short Product Engineering Assessment of Subsea Intervention Equipment Using SWARA-MOORA-3NAG Method
title_sort product engineering assessment of subsea intervention equipment using swara moora 3nag method
topic engineering requirements
oil and gas
decision making
MCDA
SWARA-MOORA-3NAG
product development
url https://www.mdpi.com/2079-8954/11/3/125
work_keys_str_mv AT pedrogallfernandes productengineeringassessmentofsubseainterventionequipmentusingswaramoora3nagmethod
AT osvaldoluizgoncalvesquelhas productengineeringassessmentofsubseainterventionequipmentusingswaramoora3nagmethod
AT carlosfranciscosimoesgomes productengineeringassessmentofsubseainterventionequipmentusingswaramoora3nagmethod
AT endersonluizpereirajunior productengineeringassessmentofsubseainterventionequipmentusingswaramoora3nagmethod
AT ricardoluizfernandesbella productengineeringassessmentofsubseainterventionequipmentusingswaramoora3nagmethod
AT claudiodesouzarochajunior productengineeringassessmentofsubseainterventionequipmentusingswaramoora3nagmethod
AT ruancarlosalvespereira productengineeringassessmentofsubseainterventionequipmentusingswaramoora3nagmethod
AT marciopereirabasilio productengineeringassessmentofsubseainterventionequipmentusingswaramoora3nagmethod
AT marcosdossantos productengineeringassessmentofsubseainterventionequipmentusingswaramoora3nagmethod