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Effects of Terrain-Induced Turbulence on Wind Turbine Blade Fatigue Loads

机译:地形湍流对风力涡轮机叶片疲劳负荷的影响

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摘要

Recently, the issue has surfaced that the availability factors for wind farms built on complex terrain are lower than the originally projected values. In other words, problems have occurred such as extreme decreases in generation output, failures of components inside and outside wind turbines including yaw motors and yaw gears, and cracking on wind turbine blades. As one of the causes of such issues, the effects of wind turbulence (terrain-induced turbulence) have been pointed out. In this study, we investigated the effects of terrain-induced turbulence on the structural strength of wind turbines through the measurement of strains in wind turbine blades and the analysis of wind data in order to establish a method for optimal wind turbine deployment that uses numerically simulated wind data and takes the structural strength of wind turbines into consideration. The investigation was conducted on Wind Turbine #10 of the Kushikino Reimei Wind Farm (in operation since Nov. 2012) in cooperation with Kyudenko New Energy Co., Ltd. Subsequently, we conducted numerical wind simulations (diagnoses of terrain-induced turbulence) to study the effects of the properties of airflow on the structural strength of wind turbines. For these simulations, the natural terrain version of the RIAM-COMPACT software package, which is based on large eddy simulation (LES), was used. The numerical simulations successfully reproduced the characteristics of the wind conditions and the structure of the three-dimensional airflow. These results enabled us to determine the threshold value for a turbulence index to be used for optimal wind turbine deployment planning that utilizes quantitative data from simulations with the natural terrain version of the RIAM-COMPACT software package.
机译:最近,该问题已经浮出水面,即在复杂地形上建立的风电场的可用性因素低于最初预测的值。换句话说,发生问题,例如极端减少的产生输出,内部和外部风力涡轮机的故障包括偏航电动机和偏航齿轮,以及在风力涡轮机叶片上开裂。作为这些问题的原因之一,已经指出了风湍流(地形湍流)的影响。在这项研究中,我们通过测量风力涡轮机叶片中的菌株的测量来研究地形引起的湍流对风力涡轮机的结构强度的影响,以及风数据的分析,以建立使用数值模拟的最佳风力涡轮机部署方法风数据并考虑风力涡轮机的结构强度。该调查是在Kushikino Reimei风电场的风力涡轮机#10上进行(2012年11月以来),与Kyudenko新能源有限公司合作随后,我们进行了数控模拟(诊断地形诱导的湍流)研究气流性能对风力涡轮机结构强度的影响。对于这些模拟,使用了基于大型涡流模拟(LES)的Riam-Compact软件包的自然地形版本。数值模拟成功地再现了风力条件的特性和三维气流的结构。这些结果使我们能够确定用于最佳风力涡轮机部署规划的湍流指数的阈值,该驾驶型索引利用与Riam-Compact软件包的自然地形版本的仿真来定量数据。

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