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Numerical Investigation of the Effect of Blade Profile of a Darrieus Hydrokinetic Turbine

机译:Darrieus水动力学涡轮机叶片轮廓效果的数值研究

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Darrieus based turbines have been used since decades for wind power generation. Nowadays, peoples are paying more attention toward the use of this turbine to harness the hydrokinetic potential. The profile of the blade is the main parameter to decide the power output of Darrieus hydrokinetic turbine. Therefore, an attempt has been made to select a suitable blade profile for Darrieus hydrokinetic turbine in order to enhance the power output. Computational Fluid Dynamics (CFD) based numerical analysis has been carried out in a commercial available software (ANSYS Fluent (v.18.1)). Four different blade profiles (two symmetrical and two unsymmetrical) namely NACA 0018, NACA 0010, S 9000 and S 1046 are selected for comparative study. 2D Numerical investigations are carried out around the Darrieus hydrokinetic turbine rotor and SST k-ω turbulence model has been used for the solution of Reynolds averaged Navier-Stokes equations. The fluid flow distributions of pressure and velocity around the turbine blades corresponding to each profile is analyzed and discussed. Based on the numerical analysis, it is concluded that un-symmetrical S-1046 blade profile is found to be the superior airfoil in terms of power coefficient and self-starting capability.
机译:从数十年的风力发电以来,达里斯基于塔里斯的涡轮机已经使用。如今,人民正在重视使用这种涡轮机来利用水力学电位。刀片的轮廓是决定DARRIEUS水力涡轮机的功率输出的主参数。因此,已经尝试为Darrieus水力涡轮机选择合适的刀片轮廓,以提高功率输出。基于计算的流体动力学(CFD)的数值分析已经在商业可用软件中进行(ANSYS FLUENT(V.18.1))。选择四种不同的刀片曲线(两个对称和两个不对称)即Naca 0018,NaCA 0010,S 9000和S1046用于比较研究。在Darrius水动涡轮机转子周围进行2D数值研究,SSTK-ω湍流模型已用于雷诺瓦斯平均的Navier-Stokes方程。分析并讨论了对应于每个轮廓对应的涡轮机叶片周围的压力和速度的流体流动分布。基于数值分析,得出结论,发现不对称的S-1046叶片轮廓是在功率系数和自启动能力方面是优异的翼型。

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