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Modelling wake effects in large wind farms in complex terrain: the problem, the methods and the issues

机译:在复杂地形中的大型风电场中模拟尾流效应:问题,方法和问题

摘要

Computational fluid dynamic (CFD) methods are used in this paper to predict the power production from entire wind farms in complex terrain and to shed some light into the wake flow patterns. Two full three-dimensional Navier–Stokes solvers for incompressible fluid flow, employing k − ϵ and k − ω turbulence closures, are used. The wind turbines are modeled as momentum absorbers by means of their thrust coefficient through the actuator disk approach. Alternative methods for estimating the reference wind speed in the calculation of the thrust are tested. The work presented in this paper is part of the work being undertaken within the UpWind Integrated Project that aims to develop the design tools for next generation of large wind turbines. In this part of UpWind, the performance of wind farm and wake models is being examined in complex terrain environment where there are few pre-existing relevant measurements. The focus of the work being carried out is to evaluate the performance of CFD models in large wind farm applications in complex terrain and to examine the development of the wakes in a complex terrain environment.
机译:本文使用计算流体动力学(CFD)方法来预测复杂地形中整个风力发电场的发电量,并向尾流模式提供一些信息。使用两个完整的三维Navier-Stokes求解器,用于不可压缩的流体流动,采用k-ϵ和k-ω湍流闭塞。风力涡轮机通过推力盘方法通过其推力系数建模为动量吸收器。测试了推力计算中估计参考风速的替代方法。本文中介绍的工作是UpWind集成项目中正在进行的工作的一部分,该项目旨在为下一代大型风力涡轮机开发设计工具。在UpWind的这一部分中,正在研究复杂的地形环境中风电场和尾流模型的性能,在这些环境中几乎没有预先存在的相关测量值。正在进行的工作重点是评估复杂地形中大型风电场应用中CFD模型的性能,并研究复杂地形环境中尾流的发展。

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