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Analysis and validation of CFD wind farm models in complex terrain. Effects induced by topography and wind turbines

机译:复杂地形中CFD风电场模型的分析和验证。地形和风力涡轮机引起的影响

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摘要

Wind farms have been extensively simulated through engineering models for the estimation of wind speed and power deficits inside wind farms. These models were designed initially for a few wind turbines located in flat terrain. Other models based on the parabolic approximation of Navier Stokes equations were developed, making more realistic and feasible the operational resolution of big wind farms in flat terrain and offshore sites. These models have demonstrated to be accurate enough when solving wake effects for this type of environments. Nevertheless, few analyses exist on how complex terrain can affect the behaviour of wind farm wake flow. Recent numerical studies have demonstrated that topographical wakes induce a significant effect on wind turbines wakes, compared to that on flat terrain. This circumstance has recommended the development of elliptic CFD models which allow global simulation of udwind turbine wakes in complex terrain. An accurate simplification for the analysis of wind turbine wakes is the actuator disk technique. Coupling this technique with CFD wind models enables the estimation of wind farm wakes udpreserving the extraction of axial momentum present inside wind farms. This paper describes the analysis and validation of the elliptical wake model CFDWake 1.0 against experimental data from an operating wind farm located in complex terrain. The analysis also reports whether it is possible or not to superimpose linearly the effect of terrain and wind turbine wakes. It also represents one of the first attempts to observe the performance of udengineering models compares in large complex terrain wind farms.
机译:通过工程模型对风电场进行了广泛的仿真,以估算风电场内部的风速和功率损耗。这些模型最初是为位于平坦地形中的一些风力涡轮机设计的。还开发了基于抛物线近似Navier Stokes方程的其他模型,这使在平坦地形和近海站点的大型风电场的运行分辨率更加现实可行。这些模型已证明在解决此类环境的唤醒效应时足够准确。然而,很少有关于复杂地形如何影响风电场尾流行为的分析。最近的数值研究表明,与平坦地形相比,地形唤醒对风力涡轮机的唤醒产生了显着影响。在这种情况下,建议开发椭圆CFD模型,该模型可以对复杂地形中的 udwind涡轮尾流进行全局仿真。执行器盘技术是对风力涡轮机尾流进行分析的一种精确简化方法。将此技术与CFD风模型相结合,就可以估算风电场的尾流,从而保留了风电场内部存在的轴向动量的提取。本文介绍了椭圆形尾流模型CFDWake 1.0对来自复杂地形中正在运行的风电场的实验数据的分析和验证。该分析还报告了是否可以线性叠加地形和风力涡轮机尾流的影响。这也是观察 udengineering模型在大型复杂地形风电场中进行比较的性能的首次尝试之一。

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