Mathematical Modelling of Bonded Marine Hoses for Single Point Mooring (SPM) Systems, with Catenary Anchor Leg Mooring (CALM) Buoy Application—A Review

The application of mathematical analysis has been an essential tool applied on Catenary Anchor Leg Mooring (CALM) buoys, Wave Energy Converters (WEC), point absorber buoys, and various single point mooring (SPM) systems. This enables having mathematical models for bonded marine hoses on SPM systems...

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Autores principales: Chiemela Victor Amaechi, Facheng Wang, Jianqiao Ye
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Publicado: MDPI AG 2021
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spelling oai:doaj.org-article:ebbfb0a75c25468aaf6c11b51c1df44f2021-11-25T18:03:57ZMathematical Modelling of Bonded Marine Hoses for Single Point Mooring (SPM) Systems, with Catenary Anchor Leg Mooring (CALM) Buoy Application—A Review10.3390/jmse91111792077-1312https://doaj.org/article/ebbfb0a75c25468aaf6c11b51c1df44f2021-10-01T00:00:00Zhttps://www.mdpi.com/2077-1312/9/11/1179https://doaj.org/toc/2077-1312The application of mathematical analysis has been an essential tool applied on Catenary Anchor Leg Mooring (CALM) buoys, Wave Energy Converters (WEC), point absorber buoys, and various single point mooring (SPM) systems. This enables having mathematical models for bonded marine hoses on SPM systems with application with CALM buoys, which are obviously a requisite for the techno-economic design and operation of these floating structures. Hose models (HM) and mooring models (MM) are utilized on a variety of applications such as SPARs, Semisubmersibles, WECs and CALM buoys. CALM buoys are an application of SPM systems. The goal of this review is to address the subject of marine hoses from mathematical modeling and operational views. To correctly reproduce the behavior of bonded marine hoses, including nonlinear dynamics, and to study their performance, accurate mathematical models are required. The paper gives an overview of the statics and dynamics of offshore/marine hoses. The reviews on marine hose behavior are conducted based on theoretical, numerical, and experimental investigations. The review also covers challenges encountered in hose installation, connection, and hang-off operations. State-of-the-art, developments and recent innovations in mooring applications for SURP (subsea umbilicals, risers, and pipelines) are presented. Finally, this study details the relevant materials that are utilized in hoses and mooring implementations. Some conclusions and recommendations are presented based on this review.Chiemela Victor AmaechiFacheng WangJianqiao YeMDPI AGarticlemarine hose modelmarine risermathematical hose model (HM)mathematical mooring model (MM)ocean waveshydrodynamicsNaval architecture. Shipbuilding. Marine engineeringVM1-989OceanographyGC1-1581ENJournal of Marine Science and Engineering, Vol 9, Iss 1179, p 1179 (2021)
institution DOAJ
collection DOAJ
language EN
topic marine hose model
marine riser
mathematical hose model (HM)
mathematical mooring model (MM)
ocean waves
hydrodynamics
Naval architecture. Shipbuilding. Marine engineering
VM1-989
Oceanography
GC1-1581
spellingShingle marine hose model
marine riser
mathematical hose model (HM)
mathematical mooring model (MM)
ocean waves
hydrodynamics
Naval architecture. Shipbuilding. Marine engineering
VM1-989
Oceanography
GC1-1581
Chiemela Victor Amaechi
Facheng Wang
Jianqiao Ye
Mathematical Modelling of Bonded Marine Hoses for Single Point Mooring (SPM) Systems, with Catenary Anchor Leg Mooring (CALM) Buoy Application—A Review
description The application of mathematical analysis has been an essential tool applied on Catenary Anchor Leg Mooring (CALM) buoys, Wave Energy Converters (WEC), point absorber buoys, and various single point mooring (SPM) systems. This enables having mathematical models for bonded marine hoses on SPM systems with application with CALM buoys, which are obviously a requisite for the techno-economic design and operation of these floating structures. Hose models (HM) and mooring models (MM) are utilized on a variety of applications such as SPARs, Semisubmersibles, WECs and CALM buoys. CALM buoys are an application of SPM systems. The goal of this review is to address the subject of marine hoses from mathematical modeling and operational views. To correctly reproduce the behavior of bonded marine hoses, including nonlinear dynamics, and to study their performance, accurate mathematical models are required. The paper gives an overview of the statics and dynamics of offshore/marine hoses. The reviews on marine hose behavior are conducted based on theoretical, numerical, and experimental investigations. The review also covers challenges encountered in hose installation, connection, and hang-off operations. State-of-the-art, developments and recent innovations in mooring applications for SURP (subsea umbilicals, risers, and pipelines) are presented. Finally, this study details the relevant materials that are utilized in hoses and mooring implementations. Some conclusions and recommendations are presented based on this review.
format article
author Chiemela Victor Amaechi
Facheng Wang
Jianqiao Ye
author_facet Chiemela Victor Amaechi
Facheng Wang
Jianqiao Ye
author_sort Chiemela Victor Amaechi
title Mathematical Modelling of Bonded Marine Hoses for Single Point Mooring (SPM) Systems, with Catenary Anchor Leg Mooring (CALM) Buoy Application—A Review
title_short Mathematical Modelling of Bonded Marine Hoses for Single Point Mooring (SPM) Systems, with Catenary Anchor Leg Mooring (CALM) Buoy Application—A Review
title_full Mathematical Modelling of Bonded Marine Hoses for Single Point Mooring (SPM) Systems, with Catenary Anchor Leg Mooring (CALM) Buoy Application—A Review
title_fullStr Mathematical Modelling of Bonded Marine Hoses for Single Point Mooring (SPM) Systems, with Catenary Anchor Leg Mooring (CALM) Buoy Application—A Review
title_full_unstemmed Mathematical Modelling of Bonded Marine Hoses for Single Point Mooring (SPM) Systems, with Catenary Anchor Leg Mooring (CALM) Buoy Application—A Review
title_sort mathematical modelling of bonded marine hoses for single point mooring (spm) systems, with catenary anchor leg mooring (calm) buoy application—a review
publisher MDPI AG
publishDate 2021
url https://doaj.org/article/ebbfb0a75c25468aaf6c11b51c1df44f
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AT fachengwang mathematicalmodellingofbondedmarinehosesforsinglepointmooringspmsystemswithcatenaryanchorlegmooringcalmbuoyapplicationareview
AT jianqiaoye mathematicalmodellingofbondedmarinehosesforsinglepointmooringspmsystemswithcatenaryanchorlegmooringcalmbuoyapplicationareview
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