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首页> 外文期刊>Energies >CFD Study on Aerodynamic Power Output Changes with Inter-Turbine Spacing Variation for a 6 MW Offshore Wind Farm
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CFD Study on Aerodynamic Power Output Changes with Inter-Turbine Spacing Variation for a 6 MW Offshore Wind Farm

机译:6 MW海上风电场气动功率输出随涡轮间距变化的CFD研究

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This study examined the aerodynamic power output change of wind turbines with inter-turbine spacing variation for a 6 MW wind farm composed of three sets of 2 MW wind turbines using computational fluid dynamics (CFD). The wind farm layout design is becoming increasingly important as the use of wind energy is steadily increasing. Among the many wind farm layout design parameters, the inter-turbine spacing is a key factor in the initial investment cost, annual energy production and maintenance cost. The inter-turbine spacing should be determined to maximize the annual energy production and minimize the wake effect, turbulence effect and fatigue load during the service lifetime of wind turbines. Therefore, some compromise between the aerodynamic power output of wind turbines and the inter-turbine spacing is needed. An actuator disc model with the addition of a momentum source was not used, and instead, a full 3-dimensional model with a tower and nacelle was used for CFD analysis because of its great technical significance. The CFD analysis results, such as the aerodynamic power output, axial direction wind speed change, pressure drop across the rotor of wind turbine, and wind speed deficit due to the wake effect with inter-turbine spacing variation, were studied. The results of this study can be applied effectively to wind farm layout design and evaluation.
机译:这项研究使用计算流体力学(CFD)研究了由三套2兆瓦风力发电机组成的6兆瓦风力发电场的风力发电机功率变化,该变化具有涡轮间距的变化。随着风能的使用不断增加,风电场布局设计变得越来越重要。在许多风电场布局设计参数中,涡轮间距是初始投资成本,年能源生产和维护成本的关键因素。应确定涡轮机之间的间距,以在风力涡轮机的使用寿命期间最大程度地提高年发电量,并使尾流效应,湍流效应和疲劳负荷最小化。因此,需要在风力涡轮机的空气动力输出和涡轮间间距之间做出一些折衷。没有使用带有动量源的执行器盘模型,而是使用具有塔架和机舱的完整3维模型进行CFD分析,因为它具有很大的技术意义。研究了CFD分析结果,如空气动力输出,轴向风速变化,风力涡轮机转子两端的压降以及由于涡轮间距变化而产生的尾流效应引起的风速不足。这项研究的结果可以有效地应用于风电场布局设计和评估。

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