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MODELING OF FLOW ACCELERATION AROUND WIND FARMS

机译:绕风框架的流场加速建模

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Recent measurements from operating wind farms demonstrate that the layout of the farm and interactions between turbine wakes strongly affects the overall efficiency of the wind farm. In some wind farms arranged in rectangular layouts, winds coming from the direction of the rectangular corner create a potential acceleration around the wind farm. This acceleration inherently leads to stronger local wind speeds at wind turbines downstream of the corner turbine, thereby increasing the power output of the downstream turbines. In this study, computational models are developed to predict this complex behavior seen in wind farms. The model used to examine these effects is a fully three-dimensional unsteady incompressible Navier-Stokes code, with the turbulence model turned off. Preliminary results show an optimum spacing configuration is possible. However, the results have yet to be verified at higher Reynolds number, which will be the effort of future work. Ultimately, these tools may lead to more optimal wind farm layouts.
机译:运营中的风电场的最新测量结果表明,风电场的布局以及涡轮机尾流之间的相互作用会严重影响风电场的整体效率。在一些以矩形布局布置的风电场中,来自矩形角方向的风会在风电场周围产生潜在的加速度。该加速度固有地导致转角涡轮下游的风力涡轮机处的局部风速更强,从而增加了下游涡轮的功率输出。在这项研究中,开发了计算模型来预测在风电场中看到的这种复杂行为。用于检查这些影响的模型是完全三维的非稳态不可压缩的Navier-Stokes代码,并且湍流模型已关闭。初步结果表明最佳间距配置是可能的。但是,仍需在更高的雷诺数下验证结果,这将是未来工作的成果。最终,这些工具可能会导致更优化的风电场布局。

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