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Two improvements to the dynamic wake meandering model: including the effects of atmospheric shear on wake turbulence and incorporating turbulence build-up in a row of wind turbines

机译:动态尾迹曲折模型的两个改进:包括大气剪切对尾迹湍流的影响以及将湍流积聚合并到一排风力涡轮机中

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摘要

The dynamic wake meandering (DWM) model is an engineering wake model designed to physically model the wake deficit evolution and the unsteady meandering that occurs in wind turbine wakes. The present study aims at improving two features of the model: 1.The effect of the atmospheric boundary layer shear on the wake deficit evolution by including a strain-rate contribution in the wake turbulence calculation.2.The method to account for the increased turbulence at a wake-affected turbine by basing the wake-added turbulence directly on the Reynolds stresses of the oncoming wake. This also allows the model to simulate the build-up of turbulence over a row of turbines in a physically consistent manner.The performance of the modified model is validated against actuator line (AL) model results and field data from the Lillgrund offshore wind farm. Qualitatively, the modified DWM model is in fair agreement with the reference data. A quantitative comparison between the mean flow field of the DWM model with and without the suggested improvements, to that of the AL model, shows that the root-mean-square difference in terms of wind speed and turbulence intensity is reduced on the order of 30% and 40%, respectively, by including the proposed corrections for a row of eight turbines. Furthermore, it is found that the root-mean-square difference between the AL model and the modified DWM model in terms of wind speed and turbulence intensity does not increase over a row of turbines compared with the root-mean-square difference of a single turbine.
机译:动态尾流曲折(DWM)模型是一种工程尾流模型,旨在物理模拟尾流赤字演变和在风力涡轮机尾流中发生的非稳态曲折。本研究旨在改善该模型的两个特征:1.通过在尾流计算中包括应变率贡献,来提高大气边界层剪切对尾流缺陷演变的影响。2.解决湍流增加的方法在受尾流影响的涡轮机上,将增加了尾流的湍流直接基于即将到来的尾流的雷诺应力。这也允许该模型以物理上一致的方式模拟一排涡轮机上的湍流累积。修改后的模型的性能已根据执行器线(AL)模型的结果和Lillgrund海上风电场的现场数据进行了验证。定性地,修改后的DWM模型与参考数据完全吻合。 DWM模型的平均流场与AL模型的平均流场之间的定量比较表明,在有风速和湍流强度方面,均方根差异减小了约30%包括针对一排八个涡轮机的建议修正值,分别为%和40%。此外,发现在风速和湍流强度方面,AL模型和改进的DWM模型之间的均方根差与单个涡轮的均方根差相比并没有增加涡轮。

著录项

  • 来源
    《Wind Energy》 |2015年第1期|111-132|共22页
  • 作者单位

    Rotor Systems, Vestas Wind Systems A/S, 4000 Roskilde, Denmark,Wind Energy Department, Riso DTU National Laboratory for Sustainable Energy, 4000 Roskilde, Denmark;

    Rotor Systems, Vestas Wind Systems A/S, 4000 Roskilde, Denmark,Wind Energy Department, Riso DTU National Laboratory for Sustainable Energy, 4000 Roskilde, Denmark;

    National Renewable Energy Laboratory, 15031 Denver West Parkway, Golden, Colorado 80401-3305, USA;

    National Renewable Energy Laboratory, 15031 Denver West Parkway, Golden, Colorado 80401-3305, USA;

    Wind Energy Department, Riso DTU National Laboratory for Sustainable Energy, 4000 Roskilde, Denmark;

    Wind Energy Department, Riso DTU National Laboratory for Sustainable Energy, 4000 Roskilde, Denmark;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Dynamic wake meandering; DWM; Wake modelling; Actuator line model; Wind turbine wake; wake-added turbuelnce; Wake turbulence; Wind farm modelling;

    机译:动态尾流曲折;DWM;唤醒建模;执行器线模型;风力发电机尾流;尾流湍流;尾流风电场建模;
  • 入库时间 2022-08-18 00:10:37

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