Reliability Assurance of Subsea Production Systems: A Systems Engineering Framework

​Due to the high investment costs for deep-water subsea production systems of high-value subsea fields, it is crucial to ensure a high availability to recover the investment. The problem is compounded by the cost of recovery, repair and replacement of failed equipment. Testing and reliability analys...

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Main Authors: Sirous Yasseri, Hamid Bahai, Ramin Yasseri
Format: Article
Language:English
Published: Iranian Association of Naval Architecture and Marine Engineering 2018-06-01
Series:International Journal of Coastal and Offshore Engineering
Subjects:
Online Access:http://ijcoe.org/article-1-65-en.html
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spelling doaj-2595f48bafe542b4b102aafa18a442c62020-11-25T02:48:49ZengIranian Association of Naval Architecture and Marine EngineeringInternational Journal of Coastal and Offshore Engineering2538-26672588-31862018-06-0121119Reliability Assurance of Subsea Production Systems: A Systems Engineering FrameworkSirous Yasseri0Hamid Bahai1Ramin Yasseri2 Brunel University Brunel University Aker Solution London ​Due to the high investment costs for deep-water subsea production systems of high-value subsea fields, it is crucial to ensure a high availability to recover the investment. The problem is compounded by the cost of recovery, repair and replacement of failed equipment. Testing and reliability analyses are two pillars of reliability assurance; neither of them on their own assures the delivery of a reliable system. Possibly with more imaginative use of reliability methods, it is possible to optimise testing. It is suggested to use reliability analysis as a guide for allocating resources for testing. This paper outlines a Systems Engineering Framework to link the Client’s requirements for equipment reliability, as a means of proving the desired level of performance. This framework allows a better understanding of verification settings and strategies to handle constraints (e.g. costs, expandability, repair-ability, maintainability, intervention procedures, downtime, automation etc.) and performance measures, to achieve highly reliable production systems.  The bilateral links between the Client’s requirements and subsea equipment performance are established using the systems engineering V-model. These links relate equipment performance to one or more of the Client’s requirements, which helps establish verification and validation testing strategies to enhance reliability and reduce project risk. The proposed procedure also assists risk management efforts by feeding the results of reliability analyses, testing and project risk analysis into validation processes, the systems engineering measurement process ensures enhanced reliability. We define reliability assurance as a part of the systems engineering processes to ensure the continued function and resilience of the production system from the downhole valve to the subsea equipment, housed on the topside or at an onshore terminal, in their operating environment and condition using the “Fit-For-Service” notion.http://ijcoe.org/article-1-65-en.htmlsubsea production systemreliability assurancesystems engineering frameworkverificationvalidation ;testingqualification ;certification
collection DOAJ
language English
format Article
sources DOAJ
author Sirous Yasseri
Hamid Bahai
Ramin Yasseri
spellingShingle Sirous Yasseri
Hamid Bahai
Ramin Yasseri
Reliability Assurance of Subsea Production Systems: A Systems Engineering Framework
International Journal of Coastal and Offshore Engineering
subsea production system
reliability assurance
systems engineering framework
verification
validation ;
testing
qualification ;
certification
author_facet Sirous Yasseri
Hamid Bahai
Ramin Yasseri
author_sort Sirous Yasseri
title Reliability Assurance of Subsea Production Systems: A Systems Engineering Framework
title_short Reliability Assurance of Subsea Production Systems: A Systems Engineering Framework
title_full Reliability Assurance of Subsea Production Systems: A Systems Engineering Framework
title_fullStr Reliability Assurance of Subsea Production Systems: A Systems Engineering Framework
title_full_unstemmed Reliability Assurance of Subsea Production Systems: A Systems Engineering Framework
title_sort reliability assurance of subsea production systems: a systems engineering framework
publisher Iranian Association of Naval Architecture and Marine Engineering
series International Journal of Coastal and Offshore Engineering
issn 2538-2667
2588-3186
publishDate 2018-06-01
description ​Due to the high investment costs for deep-water subsea production systems of high-value subsea fields, it is crucial to ensure a high availability to recover the investment. The problem is compounded by the cost of recovery, repair and replacement of failed equipment. Testing and reliability analyses are two pillars of reliability assurance; neither of them on their own assures the delivery of a reliable system. Possibly with more imaginative use of reliability methods, it is possible to optimise testing. It is suggested to use reliability analysis as a guide for allocating resources for testing. This paper outlines a Systems Engineering Framework to link the Client’s requirements for equipment reliability, as a means of proving the desired level of performance. This framework allows a better understanding of verification settings and strategies to handle constraints (e.g. costs, expandability, repair-ability, maintainability, intervention procedures, downtime, automation etc.) and performance measures, to achieve highly reliable production systems.  The bilateral links between the Client’s requirements and subsea equipment performance are established using the systems engineering V-model. These links relate equipment performance to one or more of the Client’s requirements, which helps establish verification and validation testing strategies to enhance reliability and reduce project risk. The proposed procedure also assists risk management efforts by feeding the results of reliability analyses, testing and project risk analysis into validation processes, the systems engineering measurement process ensures enhanced reliability. We define reliability assurance as a part of the systems engineering processes to ensure the continued function and resilience of the production system from the downhole valve to the subsea equipment, housed on the topside or at an onshore terminal, in their operating environment and condition using the “Fit-For-Service” notion.
topic subsea production system
reliability assurance
systems engineering framework
verification
validation ;
testing
qualification ;
certification
url http://ijcoe.org/article-1-65-en.html
work_keys_str_mv AT sirousyasseri reliabilityassuranceofsubseaproductionsystemsasystemsengineeringframework
AT hamidbahai reliabilityassuranceofsubseaproductionsystemsasystemsengineeringframework
AT raminyasseri reliabilityassuranceofsubseaproductionsystemsasystemsengineeringframework
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