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HYDRODYNAMIC RESPONSE OF THREE COLUMN SEMI-SUBMERSIBLE FLOATER SUPPORTING VERTICAL AXIS WIND TURBINE

机译:支撑立式半轴风轮机的三柱半浸式浮子的水动力响应

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Offshore wind energy extraction has gathered momentum around the world due to its advantages over onshore wind farms at various fronts. The floating support system with vertical axis wind turbine might prove to be feasible concept in medium to deep waters. In this context, this paper addresses an investigation of hydrodynamic analysis of three column semi-submersible with Vertical Axis Wind Turbine (VAWT) in parked condition under regular and random waves. Free decay experiments were conducted for using scale model (1:75) in a laboratory wave basin at the Department of Ocean Engineering in Indian Institute of Technology Madras, India. Computational Fluid Dynamics (CFD) simulations were used to assess damping characteristics and validated with the experiments. Numerical simulations of hydrodynamic motion response of the floater were carried out using potential flow theory based commercial software (ANSYS AQWA). The damping values obtained from experiments were used in numerical simulations to obtain motion response and Response Amplitude Operator (RAO). The motion response obtained from the study was used to verify the suitability of the system for deployment in east and west coast of India.
机译:海上风能开采在各个方面都比陆上风电场具有优势,因此在全球范围内发展势头迅猛。垂直轴风力发电机的浮动支撑系统在中深水域可能是可行的。在这种情况下,本文研究了在停泊条件下规则和随机波浪作用下三轴半潜式垂直轴风力涡轮机(VAWT)的水动力分析研究。在印度马德拉斯印度理工学院海洋工程系的实验室波浪盆地中,使用比例模型(1:75)进行了自由衰减实验。计算流体动力学(CFD)仿真用于评估阻尼特性,并通过实验进行了验证。使用基于势流理论的商业软件(ANSYS AQWA)对浮子的水动力运动响应进行了数值模拟。从实验中获得的阻尼值被用于数值模拟中以获得运动响应和响应幅度算子(RAO)。从研究中获得的运动响应被用来验证该系统在印度东海岸和西海岸部署的适用性。

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