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首页> 外文期刊>Journal of Power and Energy Engineering >Performance Investigation of Three Combined Airfoils Bladed Small Scale Horizontal Axis wind Turbine by BEM and CFD Analysis
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Performance Investigation of Three Combined Airfoils Bladed Small Scale Horizontal Axis wind Turbine by BEM and CFD Analysis

机译:三种组合翼型的性能调查BEM和CFD分析的小型水平轴风风力涡轮机

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The present work is based on the comparative study between “Blade-Element- Momentum” (BEM) analysis and “Computational-Fluid-Dynamics” (CFD) analysis of small-scale horizontal axis wind turbine blade. In this study, the pitch is considered as fixed and rotor speed is variable. Firstly, the aerodynamic characteristics of three different specialized airfoils were analyzed to get optimum design parameters of wind turbine blade. Then BEM was performed with the application of the open source wind turbine design and performance computation software Q-Blade v0.6. After that, CFD simulation was done by Ansys CFX software. Here, k-ω “Shear-Stress-Transport” (SST) model was conducted for three-dimensional visualization of turbine performance. However, the best coefficient of performance was observed at 6o angle of attack. At this angle of attack, in the case of BEM, the highest coefficient of performance was 0.47 whereby CFD analysis, it was 0.43. Both studies showed good performance prediction which was a positive step to accelerate the continuous revolution in wind energy sector.
机译:本作本作基于“刀片元素 - 动量”(BEM)分析与小型水平轴风力涡轮机叶片的“计算流体动力学”(CFD)分析的比较研究。在这项研究中,间距被认为是固定的并且转子速度是可变的。首先,分析了三种不同专业翼型的空气动力学特性,以获得风力涡轮机叶片的最佳设计参数。然后通过应用开源风力涡轮机设计和性能计算软件Q-Blade V0.6进行BEM。之后,CFD仿真由ANSYS CFX软件完成。这里,进行K-ω“剪切应力传输”(SST)模型,用于涡轮机性能的三维可视化。然而,在60次攻角处观察到最好的性能系数。在这种攻角,在BEM的情况下,最高的性能系数为0.47,从而CFD分析,为0.43。这两项研究表明良好的性能预测,这是加速风能部门的持续革命的积极步骤。

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