Hydrodynamic Analysis of a Modular Integrated Floating Structure System Based on Dolphin-Fender Mooring

For both the expansion of important islands/reefs and the development of marine resources in South China Sea, a modular integrated floating structure (MIFS) system with tidal self-adaptation dolphin-fender mooring (DFM) has been proposed. The DFM, coupled with wave energy converters (WEC), can serve...

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Published in:Journal of Marine Science and Engineering
Main Authors: Nianxin Ren, Yuekai Yu, Xiang Li, Jinping Ou
Format: Article
Language:English
Published: MDPI AG 2022-10-01
Subjects:
Online Access:https://www.mdpi.com/2077-1312/10/10/1470
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author Nianxin Ren
Yuekai Yu
Xiang Li
Jinping Ou
author_facet Nianxin Ren
Yuekai Yu
Xiang Li
Jinping Ou
author_sort Nianxin Ren
collection DOAJ
container_title Journal of Marine Science and Engineering
description For both the expansion of important islands/reefs and the development of marine resources in South China Sea, a modular integrated floating structure (MIFS) system with tidal self-adaptation dolphin-fender mooring (DFM) has been proposed. The DFM, coupled with wave energy converters (WEC), can serve as an anti-motion system. Considering both the modules’ hydrodynamic interaction effect and the connectors’ mechanical coupling effect, both dynamic responses of the MIFS system and the WEC’s output power characteristics were investigated under typical sea conditions. Based on the comprehensive consideration of key factors (safety, economy, and comfort), the effects of both the DFM and module connectors were systematically studied for the MIFS system. Preliminarily optimal design parameters of corresponding connectors and WECs were suggested. The security of the MIFS system under extreme sea conditions was checked, and a promising survival strategy has been proposed. In addition, the modular expansion scheme of the MIFS system was further discussed, and the results indicated that the proposed MIFS system shows good expansibility. The WEC can not only improve both dynamic responses and the comfort of inner modules, but also make considerable wave energy contributions.
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spelling doaj-art-ece3f0f7cb64444e96ef12a3336c8a382025-08-19T22:56:45ZengMDPI AGJournal of Marine Science and Engineering2077-13122022-10-011010147010.3390/jmse10101470Hydrodynamic Analysis of a Modular Integrated Floating Structure System Based on Dolphin-Fender MooringNianxin Ren0Yuekai Yu1Xiang Li2Jinping Ou3School of Civil and Architectural Engineering, Hainan University, Haikou 570228, ChinaState Key Laboratory of Coast and Offshore Engineering, Dalian University of Technology, Dalian 116024, ChinaSchool of Civil and Architectural Engineering, Hainan University, Haikou 570228, ChinaSchool of Civil and Environmental Engineering, Harbin Institute of Technology, Shenzhen 518055, ChinaFor both the expansion of important islands/reefs and the development of marine resources in South China Sea, a modular integrated floating structure (MIFS) system with tidal self-adaptation dolphin-fender mooring (DFM) has been proposed. The DFM, coupled with wave energy converters (WEC), can serve as an anti-motion system. Considering both the modules’ hydrodynamic interaction effect and the connectors’ mechanical coupling effect, both dynamic responses of the MIFS system and the WEC’s output power characteristics were investigated under typical sea conditions. Based on the comprehensive consideration of key factors (safety, economy, and comfort), the effects of both the DFM and module connectors were systematically studied for the MIFS system. Preliminarily optimal design parameters of corresponding connectors and WECs were suggested. The security of the MIFS system under extreme sea conditions was checked, and a promising survival strategy has been proposed. In addition, the modular expansion scheme of the MIFS system was further discussed, and the results indicated that the proposed MIFS system shows good expansibility. The WEC can not only improve both dynamic responses and the comfort of inner modules, but also make considerable wave energy contributions.https://www.mdpi.com/2077-1312/10/10/1470modular integrated floating structuredolphin-fender mooringwave energy convertermodular expansiontidal self-adaptation
spellingShingle Nianxin Ren
Yuekai Yu
Xiang Li
Jinping Ou
Hydrodynamic Analysis of a Modular Integrated Floating Structure System Based on Dolphin-Fender Mooring
modular integrated floating structure
dolphin-fender mooring
wave energy converter
modular expansion
tidal self-adaptation
title Hydrodynamic Analysis of a Modular Integrated Floating Structure System Based on Dolphin-Fender Mooring
title_full Hydrodynamic Analysis of a Modular Integrated Floating Structure System Based on Dolphin-Fender Mooring
title_fullStr Hydrodynamic Analysis of a Modular Integrated Floating Structure System Based on Dolphin-Fender Mooring
title_full_unstemmed Hydrodynamic Analysis of a Modular Integrated Floating Structure System Based on Dolphin-Fender Mooring
title_short Hydrodynamic Analysis of a Modular Integrated Floating Structure System Based on Dolphin-Fender Mooring
title_sort hydrodynamic analysis of a modular integrated floating structure system based on dolphin fender mooring
topic modular integrated floating structure
dolphin-fender mooring
wave energy converter
modular expansion
tidal self-adaptation
url https://www.mdpi.com/2077-1312/10/10/1470
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AT yuekaiyu hydrodynamicanalysisofamodularintegratedfloatingstructuresystembasedondolphinfendermooring
AT xiangli hydrodynamicanalysisofamodularintegratedfloatingstructuresystembasedondolphinfendermooring
AT jinpingou hydrodynamicanalysisofamodularintegratedfloatingstructuresystembasedondolphinfendermooring