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Analysis of the Potential for Increased Power Production in an Onshore Test Wind Farm Using Active Wake Control Methods

机译:使用主动唤醒方法分析陆上试验风电场中电力生产增加的潜力

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The total energy yield of modern wind farms is heavily influenced by the wake formations of individual turbines. Using state-of-the-art operation control methods, these wake formations normally reduce the kinetic energy in the wind flow that can be extracted by downwind-located turbines. Advanced operation control methods take wake effects into account, aiming at an increased overall energy yield of wind farms and decreased structural loads at the assets. In this paper, active wake control methods have been applied in simulation to the operation control of an onshore wind farm installed in Turkey. The simulation results show that active wake control methods offer the potential to increase the total power output depending on the current wind scenarios correlated to the wind farm layout. The wake redirection control as first method is well suited to increase the power output for large distances between the interacting turbines, whereas the axial induction control as second method was found to be ineffective regarding a positive effect on the total energy yield. However, by applying this method, the power generation can be distributed more equally across the wind turbines so that a positive impact on the mechanical stress on the most heavily loaded wind turbines of the wind farm is expected.
机译:现代风电场的总能源产量受到单个涡轮机的唤醒形成的严重影响。使用最先进的操作控制方法,这些唤醒形成通常会降低风力流动中的动能,这些动力流动可以通过下行的涡轮机提取。先进的操作控制方法考虑了唤醒效果,旨在提高风电场的总能源产量,并在资产上减少结构负荷。在本文中,在土耳其安装的陆上风电场的运行控制中,已应用主动唤醒控制方法。仿真结果表明,主动唤醒控制方法提供了增加与风电场布局相关的当前风景的总功率输出的可能性。作为第一方法的唤醒重定向控制非常适合增加相互作用涡轮机之间的大距离的功率输出,而作为第二种方法的轴向感应控制对于对总能量产率的积极影响无效。然而,通过应用该方法,可以在风力涡轮机上更频繁地分布发电,使得预期对风电场的最重负载风力涡轮机上的机械应力产生正影响。

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