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Comparative assessment of the harmonic balance Navier Stokes technology for horizontal and vertical axis wind turbine aerodynamics

机译:水平和垂直轴风力涡轮机空气动力学谐波平衡Navier Stokes技术的比较评估

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摘要

Several important wind turbine unsteady flow regimes, such as those associated with the yawed wind condition of horizontal axis machines, and most operating conditions of all vertical axis machines, are predominantly periodic. The harmonic balance Reynolds-averaged Navier-Stokes technology for the rapid calculation of nonlinear periodic flow fields has been successfully used to greatly reduce runtimes of turbomachinery periodic flow analyses in the past fifteen years. This paper presents an objective comparative study of the performance and solution accuracy of this technology for aerodynamic analysis and design applications of horizontal and vertical axis wind turbines. The considered use cases are the periodic flow past the blade section of a utility-scale horizontal axis wind turbine rotor in yawed wind, and the periodic flow of a H-Darrieus rotor section working at a tip-speed ratio close to that of maximum power. The aforementioned comparative assessment is based on thorough parametric time-domain and harmonic balance analyses of both use cases. The paper also reports the main mathematical and numerical features of a new turbulent harmonic balance Navier-Stokes solver using Menter’s shear stress transport model for the turbulence closure. Presented results indicate that a) typical multi-megawatt horizontal axis wind turbine periodic flows can be computed by the harmonic balance solver about ten times more rapidly than by the conventional time-domain analysis, achieving the same temporal accuracy of the latter method, and b) the harmonic balance acceleration for Darrieus rotor unsteady flow analysis is lower than for horizontal axis machines, and the harmonic balance solutions feature undesired oscillations caused by the wide harmonic content and the high-level of stall predisposition of this flow field type.
机译:几种重要的风力涡轮机非稳态流动状态,主要是周期性的,例如与水平轴电机的偏航状态以及所有垂直轴电机的大多数运行状态有关的状态。在过去的十五年中,用于快速计算非线性周期流量的谐波平衡雷诺平均Navier-Stokes技术已成功用于大大减少涡轮机械周期流量的运行时间。本文对水平和垂直轴风力涡轮机的空气动力学分析和设计应用中的这项技术的性能和求解精度进行了客观的比较研究。所考虑的用例是在偏航风中经过实用规模的水平轴风力涡轮机转子的叶片部分的周期性流动,以及工作在末梢速比接近最大功率的H-Darrieus转子部分的周期性流动。 。前述比较评估是基于对两个用例的完整参数时域和谐波平衡分析。该论文还报告了一种新的湍流谐波平衡Navier-Stokes求解器的主要数学和数值特征,该求解器使用Menter的切应力传递模型进行了湍流闭合。提出的结果表明:a)谐波平衡求解器可以计算出典型的几兆瓦水平轴风力涡轮机的周期性流量,其速度是传统时域分析的十倍,达到了与后者相同的时间精度; b )Darrieus转子非定常分析的谐波平衡加速度低于水平轴电机,并且该谐波平衡解决方案的特点是该磁场类型的谐波含量高和失速倾向高,导致不希望的振荡。

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