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Modeling the wake dynamics of a marine hydrokinetic turbine using different actuator representations

机译:使用不同的执行器表示建模船用水力涡轮机的唤醒动力学

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摘要

Numerical models play a fundamental role in the development of marine hydrokinetic (MHK) turbines, as they can evaluate their performance and assess interactions with the local environment. Actuator representations that incorporate a force in the momentum equation of the flow are commonly used in numerical models to study the complex dynamics of wakes generated by the devices. However, the implications of adopting any of these approaches in simulations of turbulent wakes are not yet clear. To understand the effects produced by different approaches, we carry out simulations using a coherent-structure resolving turbulence model, for which we test three actuator representations: Actuator Disk, Blade-Element Momentum, and Actuator Lines. We reproduce an experiment with a horizontal-axis turbine and show the influence of each formulation on the mean flow and on the dynamics of the wake. In all three cases, unsteady large-scale vortices govern the flow statistics, but while the mean flow is captured reasonably well by all models, they produce structures of different scales and rotational features that control the details of wake recovery. These new insights can help define the most appropriate model for each specific flow and improve predictions at different spatial scales in future investigations.
机译:数值模型在开发海洋水管(MHK)涡轮机中起着基本作用,因为它们可以评估它们的性能并评估与当地环境的相互作用。在流量的动量方程中包含一种力的致动器表示通常用于数值模型,以研究由设备产生的唤醒的复杂动态。然而,采用这些方法在湍流唤醒的模拟中采用任何方法的含义尚不清楚。要了解不同方法产生的效果,我们使用相干结构解决湍流模型进行模拟,我们测试三个执行器表示:执行器盘,刀片元件动量和执行器线。我们再现具有水平轴涡轮机的实验,并显示每个配方对平均流量的影响和唤醒动力学。在所有三种情况下,不稳定的大规模涡流控制流量统计,但是当所有模型都合理地捕获平均流量时,它们会产生不同尺度和旋转特征的结构,控制唤醒恢复的细节。这些新的见解可以帮助为每个特定流程定义最合适的模型,并在将来的调查中提高不同空间尺度的预测。

著录项

  • 来源
    《Ocean Engineering》 |2021年第15期|108584.1-108584.15|共15页
  • 作者单位

    Pontificia Univ Catolica Chile Dept Ingn Hidraul & Ambiental Av Vicuna Mackenna 4860 Santiago 7820436 Chile|Marine Energy Res & Innovat Ctr MERIC Av Apoquindo 2827 Santiago 7550268 Chile;

    Pontificia Univ Catolica Chile Dept Ingn Hidraul & Ambiental Av Vicuna Mackenna 4860 Santiago 7820436 Chile|Marine Energy Res & Innovat Ctr MERIC Av Apoquindo 2827 Santiago 7550268 Chile|Univ Notre Dame Dept Civil & Environm Engn & Earth Sci Notre Dame IN 46556 USA;

    Pontificia Univ Catolica Chile Dept Ingn Hidraul & Ambiental Av Vicuna Mackenna 4860 Santiago 7820436 Chile|Marine Energy Res & Innovat Ctr MERIC Av Apoquindo 2827 Santiago 7550268 Chile;

    Pontificia Univ Catolica Chile Dept Ingn Hidraul & Ambiental Av Vicuna Mackenna 4860 Santiago 7820436 Chile|Marine Energy Res & Innovat Ctr MERIC Av Apoquindo 2827 Santiago 7550268 Chile;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Tidal turbines; Numerical modeling; Wake dynamics; Actuator models; Turbulence; Computational fluid dynamics;

    机译:潮汐涡轮机;数值建模;唤醒动态;执行器模型;湍流;计算流体动力学;
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