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浮式海上风力机运动性能和锚泊系统(英文)
引用本文:赵静,张亮,吴海涛.浮式海上风力机运动性能和锚泊系统(英文)[J].船舶与海洋工程学报,2012,11(3):328-334.
作者姓名:赵静  张亮  吴海涛
作者单位:Institute of Ocean Renewable Energy System,Harbin Engineering University
基金项目:Supported by the 111 Project under Grant No.B07019;the National Natural Science Foundation of China under Grant No.50979020
摘    要:The development of offshore wind farms was originally carried out in shallow water areas with fixed(seabed mounted) structures.However,countries with limited shallow water areas require innovative floating platforms to deploy wind turbines offshore in order to harness wind energy to generate electricity in deep seas.The performances of motion and mooring system dynamics are vital to designing a cost effective and durable floating platform.This paper describes a numerical model to simulate dynamic behavior of a new semi-submersible type floating offshore wind turbine(FOWT) system.The wind turbine was modeled as a wind block with a certain thrust coefficient,and the hydrodynamics and mooring system dynamics of the platform were calculated by SESAM software.The effect of change in environmental conditions on the dynamic response of the system under wave and wind loading was examined.The results indicate that the semi-submersible concept has excellent performance and SESAM could be an effective tool for floating wind turbine design and analysis.

关 键 词:floating  offshore  wind  turbine  semi-submersible  platform  platform  motion  mooring  dynamics  mooring  system

Motion performance and mooring system of a floating offshore wind turbine
Jing Zhao,Liang Zhang,Haitao Wu.Motion performance and mooring system of a floating offshore wind turbine[J].Journal of Marine Science and Application,2012,11(3):328-334.
Authors:Jing Zhao  Liang Zhang  Haitao Wu
Institution:Institute of Ocean Renewable Energy System,Harbin Engineering University,Harbin 150001,China
Abstract:The development of offshore wind farms was originally carried out in shallow water areas with fixed(seabed mounted) structures.However,countries with limited shallow water areas require innovative floating platforms to deploy wind turbines offshore in order to harness wind energy to generate electricity in deep seas.The performances of motion and mooring system dynamics are vital to designing a cost effective and durable floating platform.This paper describes a numerical model to simulate dynamic behavior of a new semi-submersible type floating offshore wind turbine(FOWT) system.The wind turbine was modeled as a wind block with a certain thrust coefficient,and the hydrodynamics and mooring system dynamics of the platform were calculated by SESAM software.The effect of change in environmental conditions on the dynamic response of the system under wave and wind loading was examined.The results indicate that the semi-submersible concept has excellent performance and SESAM could be an effective tool for floating wind turbine design and analysis.
Keywords:floating offshore wind turbine  semi-submersible platform  platform motion  mooring dynamics  mooring system
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