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SAVONIUS WIND TURBINE BLADE PROFILE OPTIMIZATION BY COUPLING CFD SIMULATIONS WITH SIMPLEX SEARCH TECHNIQUE

机译:通过将CFD模拟与简单搜索技术耦合来优化萨沃尼风轮机叶片轮廓

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摘要

The Savonius rotor, a drag-based vertical axis wind turbine, is characterized by its design simplicity, low noise level, self-starting ability at low wind speed and low cost. However, its low performance is always a major issue. One of the remedies of this issue is to design an optimized rotor blade profile, which has mostly been developed through trial and error approach in the literature. In this paper, an optimum blade profile is obtained by maximizing its power coefficient (Cp) by coupling CFD simulations of a rotor blade profile with the simplex search technique. Since the blade profile is symmetric about its axis, half of the blade geometry is created through natural cubic spline curve using three points. Two of them are kept fixed, whereas the other one is changed through optimization technique in its every iteration using MATLAB platform. In every iteration, the blade profile is meshed using ANSYS ICEM CFD. The analysis of the blade profile is performed through ANSYS Fluent by using shear-stress transport k-ω turbulence model. A finite volume method based solver is used to solve the transient 2D flow around the wind turbine. The optimum profile of the blade is compared with the conventional profile over a wide range of tip speed ratios (TSRs) in order to check its feasibility for practical applications. The optimum blade profile is found to be better than the semicircular blade in the range of TSR=0.6- 1.
机译:Savonius转子是基于阻力的垂直轴风力涡轮机,其特点是设计简单,噪声低,在低风速和低成本下具有自启动能力。但是,其低性能始终是一个主要问题。此问题的解决方法之一是设计一种优化的转子叶片轮廓,该轮廓主要是通过文献中的反复试验方法开发的。在本文中,通过将转子叶片轮廓的CFD模拟与单纯形搜索技术结合起来,可以通过最大化其功率系数(Cp)来获得最佳叶片轮廓。由于叶片轮廓是围绕其轴对称的,因此叶片几何的一半是通过使用三个点的自然三次样条曲线创建的。其中两个保持固定,而另一个在MATLAB平台的每次迭代中都通过优化技术进行更改。在每次迭代中,刀片轮廓均使用ANSYS ICEM CFD进行网格划分。叶片轮廓的分析是通过ANSYS Fluent使用剪切应力传输k-ω湍流模型进行的。基于有限体积方法的求解器用于求解风力涡轮机周围的瞬态二维流。在大范围的叶尖速比(TSR)上,将叶片的最佳轮廓与常规轮廓进行比较,以检查其在实际应用中的可行性。发现在TSR = 0.6-1的范围内,最佳叶片轮廓比半圆形叶片更好。

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