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A novel wake model for wind farm design on complex terrains

机译:复杂地形上的风电场设计的一种新型唤醒模型

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摘要

A numerical wake model that is capable of simulating wind turbine wake effects over complex terrains is proposed in this work. Currently, full computational fluid dynamics (CFD) simulations are required to simulate wake effects over complex terrains. Due to their high computational cost, it is difficult to apply expensive CFD simulations in the wind farm design process as optimization algorithms often require large number of solution evaluations. The proposed wake model solves a simplified variation of the Navier-Stokes equations, in which simplifications and assumptions have been implemented in order to reduce computational cost while maintaining accuracy. This model was validated by comparing with full CFD simulations with reasonable accuracy. In general, the model produces accurate results while keeping the computational cost two orders of magnitude lower than that of full CFD simulations. The low computation time highlights the model's potential to be used for optimizing wind farm layouts on complex terrains.
机译:在这项工作中提出了一种能够模拟复杂地形上的风力涡轮机唤醒效果的数值唤醒模型。目前,需要全计算流体动力学(CFD)模拟来模拟复杂地形上的唤醒效果。由于其高计算成本,因此难以在风电场设计过程中应用昂贵的CFD模拟,因为优化算法通常需要大量的解决方案评估。所提出的唤醒模型解决了Navier-Stokes方程的简化变化,其中已经实现了简化和假设,以便在保持准确性的同时降低计算成本。通过与合理准确性的完整CFD模拟进行验证,验证了该模型。通常,该模型产生准确的结果,同时保持计算成本的两个数量级低于完整的CFD仿真。低计算时间突出了模型,用于优化复杂地形上的风电场布局。

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