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Sensitivity Analysis of Offshore Wind Turbine Tower Caused by the External Force

机译:外力作用下的海上风电塔架灵敏度分析

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Generally, faster wind speeds are observed in coastal areas than in inland areas. Therefore, for the development of offshore wind energy, more electricity is expected to be generated using wind turbines. This also solves environmental obstacles such as the selection and acquisition of land for a site and the need to protect surrounding sites from noise problems. In this paper, a numerical analysis on the external forces that affects a wind turbine tower is performed, when the wind turbine is installed in a coastal area. To calculate the extreme wind and wave forces, the maximum wind speed is assumed to be 55 m/s, which is observed 10 minutes as the mean maximum wind speed of typhoon Maemi in 2003. During the calculation procedure, the wind force is calculated according to the Korea Building Code 2009. The significant wave height and period are estimated by using the Sverdrup-Munk-Bretschneider (SMB) method. The result data obtained using the SMB method are applied to Morison's equation to compute the wave force. The blade of the wind turbine is designed based on the Blade Element Momentum Theory, and the thrust force of the blade is computed. The diameters of the wind turbine tower are assumed to be 3 m, 4.5 m, and 6 m. The results of this numerical analysis show that wave force acting on the wind turbine tower is increased according to the diameter of the tower and the wind speed.
机译:通常,在沿海地区观察到的风速比内陆地区快。因此,对于海上风能的发展,期望使用风力涡轮机产生更多的电力。这也解决了环境障碍,例如场地的土地选择和征用以及保护周围场地免受噪声问题的影响。在本文中,当风力涡轮机安装在沿海地区时,对影响风力涡轮机塔架的外力进行了数值分析。为了计算极端风和波浪力,假定最大风速为55 m / s,这是2003年台风Maemi的平均最大风速10分钟的观测值。在计算过程中,将根据根据韩国建筑规范2009。使用Sverdrup-Munk-Bretschneider(SMB)方法估算重要的波浪高度和周期。使用SMB方法获得的结果数据将应用于Morison方程,以计算波浪力。基于叶片单元动量理论设计风力涡轮机叶片,并计算叶片的推力。假定风力涡轮机塔架的直径为3 m,4.5 m和6 m。数值分析结果表明,作用在风力发电机塔架上的波浪力随塔架直径和风速的增加而增加。

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