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Calculation Method of Instantaneous Wind Speed Spatial Distribution of Wind Farm

机译:风电场瞬时风速空间分布的计算方法

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Instantaneous wind speed spatial distribution of wind farm is the basis of the optimal control for wind turbines. A calculation method was proposed for the instantaneous wind speed spatial distribution in wind farm, which made the instantaneous wind speed spatial distribution is divided into wake and non-wake zone. For the non-wake zone, the instantaneous wind speed spatial distribution is mainly affected by the flow field coupling between wind turbines, in order to describe the influence accurately, a cross spectral matrix was constructed including the wind turbine mutual distance and the azimuth in wind farm, and the solving calculation process of the cross spectral matrix was deduced. For the wake zone, single wind turbine wake model and wake superposition model were established according to conservation of momentum, and then the average wind speed spatial distribution in wake zone was calculated. According to the average wind speed spatial distribution, the instantaneous wind speed spatial distribution was calculated. A wind farm is selected as case to verify the calculation method, and the results show that this calculation method can accurately describe the instantaneous wind speed spatial distribution of wind farm.
机译:风电场的瞬时风速空间分布是风力发电机组最优控制的基础。提出了风电场瞬时风速空间分布的计算方法,将瞬时风速空间分布分为苏醒区和非苏醒区。对于非苏醒区,瞬时风速空间分布主要受风力发电机之间流场耦合的影响,为了准确描述影响,构建了一个包含风力发电机相互距离和风向方位角的互谱矩阵。推导了互谱矩阵的求解计算过程。对于尾流区,根据动量守恒建立了单个风力机尾流模型和尾流叠加模型,然后计算出尾流区的平均风速空间分布。根据平均风速空间分布,计算瞬时风速空间分布。以某风电场为例对计算方法进行了验证,结果表明该计算方法可以准确地描述风电场的瞬时风速空间分布。

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