This paper investigates the dynamic loads occurring in the drivetrain of wind turbines with a focus on offshore applications. Herein a model of the gearbox of the 5 MW wind turbine is presented. The model is developed in a multi-body framework using commercial software MSC ADAMS. Validation of the model was based on the experimental data provided by NREL for 750 kW prototype gearbox. Failures of gearboxes caused by high dynamic loads have a significant influence on the cost of operation of wind farms. For these reasons in the study, the probability of failure of the gearbox working in an offshore wind turbine that operates in storm conditions with mean wind speeds less than 30 m/s is presented. In the study, normal shut-downs of a wind turbine in storm conditions were investigated. The analysis were conducted for two storm control strategies and different wind conditions from an extreme operating gust, normal turbulence model and extreme turbulence model. In the paper, loads in the planetary gear are quantified as well as the torsional moments in the main shaft. On the basis of simulation results the annual probability of failure of the gearbox in a wind turbine with soft storm controller is calculated, and compared with the one had the gearbox working in a wind turbine operating with hard storm controller. In the study, it was found that normal shut-downs do not have a significant influence on the ultimate loads in the gearbox, since they are related mostly to the gusts occurring during turbulence. Application of the storm controller with reduction of the wind turbine power allowed the decrease of the probability of failure for ultimate stresses.
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机译:本文研究了风力涡轮机传动系统中出现的动态载荷,重点是海上应用。本文介绍了5兆瓦风力发电机齿轮箱的模型。该模型是使用商业软件MSC ADAMS在多主体框架中开发的。该模型的验证基于NREL提供的750 kW原型变速箱的实验数据。高动态载荷引起的齿轮箱故障对风电场的运营成本有重大影响。由于研究中的这些原因,提出了变速箱在海上风力涡轮机中工作的概率,该海上风力涡轮机在平均风速小于30 m / s的暴风雨条件下运行。在研究中,研究了风暴条件下风力涡轮机的正常停机情况。针对极端暴风,正常湍流模型和极端湍流模型,针对两种风暴控制策略和不同的风况进行了分析。在本文中,量化了行星齿轮中的负载以及主轴中的扭矩。在仿真结果的基础上,计算了具有软风暴控制器的风力涡轮机齿轮箱的年度故障概率,并将其与具有硬风暴控制器的风力涡轮机齿轮箱进行工作的概率进行了比较。在研究中,发现正常停机不会对变速箱的极限载荷产生重大影响,因为它们主要与湍流期间发生的阵风有关。风暴控制器的应用降低了风力涡轮机的功率,从而降低了最终应力导致失效的可能性。
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