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A Comparative Study of Numerical Schemes and Turbulence Models for Wind Turbine Aerodynamics Modelling

机译:风力涡轮机空气动力学建模数值方案与湍流模型的比较研究

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This paper is a comparative study of combining turbulence models and interpolation schemes to calculate turbulent flow around a NACA0012 airfoil before and after separation. The calculations were carried out using the code CAFFA of Peric, which was appropriately modified to include more numerical schemes and turbulence models. This code solves the Navier-Stokes equations for 2D incompressible flow, using finite volumes and structured, collocated, curvilinear, body fitted grids. Seven differencing schemes were investigated: central, upwind, hybrid, QUICK, Harten-Yee upwind TVD with five limiters, Roe-Sweby upwind TVD with three limiters, and Davis-Yee symmetric TVD with three limiters. Turbulence effects were incorporated using four turbulence models: standard k-ε, k-ω high Re with wall functions, k-ω high Re with integration up to the wall, and the k-ω low Re model. A parametric study showed that best results are obtained: a) for the k-ε model, when using the Harten-Yee upwind TVD scheme for the velocities and the upwind interpolation for the turbulence properties k and ε, and b) for the k-ω models, when using the Harten-Yee upwind TVD scheme with different limiters for the velocities and the turbulence quantities k and ω The turbulence models that integrate up to the wall are more accurate when separation appears, while those using wall functions converge much faster.
机译:本文是结合湍流模型和插值方案以计算分离前后NACA0012翼型周围湍流的比较研究。计算使用Peric的代码CAFFA进行,对代码进行了适当的修改以包括更多的数值方案和湍流模型。该代码使用有限体积和结构化,并置,曲线形,身体拟合的网格来求解2D不可压缩流的Navier-Stokes方程。研究了七个差分方案:中央,逆风,混合,快速,带五个限幅器的Harten-Yee迎风TVD,带三个限幅器的Roe-Sweby迎风TVD和带三个限幅器的Davis-Yee对称TVD。使用四个湍流模型合并了湍流效应:标准k-ε,具有壁函数的k-ωhigh Re,具有直至壁的积分的k-ωhigh Re和k-ωlow Re模型。参数研究表明,可获得最佳结果:a)对于k-ε模型,当使用Harten-Yee迎风TVD方案进行速度计算时,以及对湍流特性k和ε使用迎风内插,以及b)对于k-ε模型, ω模型,当使用具有不同限制器的Harten-Yee迎风TVD方案时,速度和湍流量k和ω出现分离时,集成到壁上的湍流模型更准确,而使用壁函数的湍流模型收敛得更快。

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