Dynamic modeling of an underwater moored platform equipped with a hydrokinetic energy turbine

The limited battery energy restricts the underwater operation duration of the underwater moored platforms. In this article, a horizontal axis ocean current turbine is conceptually designed to produce power for the underwater moored platforms and extend their operational durations. As part of the dev...

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Main Authors: Wenlong Tian, Zhaoyong Mao, Baowei Song
Format: Article
Language:English
Published: SAGE Publishing 2018-02-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1177/1687814017754158
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author Wenlong Tian
Zhaoyong Mao
Baowei Song
author_facet Wenlong Tian
Zhaoyong Mao
Baowei Song
author_sort Wenlong Tian
collection DOAJ
description The limited battery energy restricts the underwater operation duration of the underwater moored platforms. In this article, a horizontal axis ocean current turbine is conceptually designed to produce power for the underwater moored platforms and extend their operational durations. As part of the development of the horizontal axis ocean current turbine, a three-dimensional dynamic model of the system is proposed. The underwater moored platform is modeled as a rigid body with the Newton–Euler method and the cable is modeled with a lumped mass method. Motion simulations are then performed to evaluate the motion performance of the moored system under different operation conditions. The influences of the net buoyancy and the ocean current velocity on the motion of the underwater moored platform are investigated. The simulation results show that the underwater moored platform oscillates in water due to the periodically changed rotor forces. The system has a higher motion stability at a higher net buoyancy, with a smaller horizontal offset and a smaller cable inclination angle. The motion stability of the system also increases with the decreased ocean current velocity.
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spelling doaj.art-4640923d68e84e89a3019becc0aa505a2022-12-22T01:03:25ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402018-02-011010.1177/1687814017754158Dynamic modeling of an underwater moored platform equipped with a hydrokinetic energy turbineWenlong TianZhaoyong MaoBaowei SongThe limited battery energy restricts the underwater operation duration of the underwater moored platforms. In this article, a horizontal axis ocean current turbine is conceptually designed to produce power for the underwater moored platforms and extend their operational durations. As part of the development of the horizontal axis ocean current turbine, a three-dimensional dynamic model of the system is proposed. The underwater moored platform is modeled as a rigid body with the Newton–Euler method and the cable is modeled with a lumped mass method. Motion simulations are then performed to evaluate the motion performance of the moored system under different operation conditions. The influences of the net buoyancy and the ocean current velocity on the motion of the underwater moored platform are investigated. The simulation results show that the underwater moored platform oscillates in water due to the periodically changed rotor forces. The system has a higher motion stability at a higher net buoyancy, with a smaller horizontal offset and a smaller cable inclination angle. The motion stability of the system also increases with the decreased ocean current velocity.https://doi.org/10.1177/1687814017754158
spellingShingle Wenlong Tian
Zhaoyong Mao
Baowei Song
Dynamic modeling of an underwater moored platform equipped with a hydrokinetic energy turbine
Advances in Mechanical Engineering
title Dynamic modeling of an underwater moored platform equipped with a hydrokinetic energy turbine
title_full Dynamic modeling of an underwater moored platform equipped with a hydrokinetic energy turbine
title_fullStr Dynamic modeling of an underwater moored platform equipped with a hydrokinetic energy turbine
title_full_unstemmed Dynamic modeling of an underwater moored platform equipped with a hydrokinetic energy turbine
title_short Dynamic modeling of an underwater moored platform equipped with a hydrokinetic energy turbine
title_sort dynamic modeling of an underwater moored platform equipped with a hydrokinetic energy turbine
url https://doi.org/10.1177/1687814017754158
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AT zhaoyongmao dynamicmodelingofanunderwatermooredplatformequippedwithahydrokineticenergyturbine
AT baoweisong dynamicmodelingofanunderwatermooredplatformequippedwithahydrokineticenergyturbine