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CFD-Based Performance Analysis and Experimental Investigation of Design Factors of Vertical Axis Wind Turbines under Low Wind Speed Conditions in Thailand

机译:基于CFD的泰国低风速条件下垂直轴风力涡轮机设计因素的性能分析及实验研究

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This paper presents effects of design factors on mechanical performance of Vertical Axis Wind Turbines (VAWTs), and an experimental investigation of optimal VAWT performance under low wind speed conditions in Thailand. Design factors include types of wind turbines, number of blades, types of materials, height-to-radius ratios, and design modifications. Potential VAWT models with different design factors are numerically analyzed within a virtual wind tunnel at various wind speeds by utilizing Xflow style="font-family:Verdana;">TM style="font-family:Verdana;">?Computational Fluid Dynamics (CFD) software. The performance curves of each VAWT are obtained as plots of power coefficients against tip speed ratios. It is found that the type of wind turbine, number of blades, and height-to-radius ratio have significant effects on mechanical performance whereas types of materials result in shifts of operating speeds of VAWTs. Accordingly, an optimal VAWT prototype is developed to operate under actual low speed wind conditions. The performance curve from experimental results agrees with the CFD results. The proposed methodology can be used in the computer design of VAWTs to improve mechanical performance before physical fabrication.
机译:本文介绍了设计因素对垂直轴风力涡轮机(瓦文)的力学性能的影响,以及泰国低风速条件下最佳VAWT性能的实验研究。设计因素包括风力涡轮机的类型,叶片数,材料类型,高度半径比率和设计修改。具有不同设计因子的潜在的VAWT模型通过利用Xflow <跨度样式=“字体,在虚拟风速下进行数值分析。 -Family:Verdana;“> TM style =”font-family:verdana;“>?计算流体动力学(CFD)软件。每个VAWT的性能曲线都是作为电力的曲线获得尖端速度比的系数。发现风力涡轮机,叶片数和高度半径比对机械性能有显着影响,而材料类型导致瓦文的操作速度的变化。因此,最佳开发了VAWT原型以在实际低速风条件下运行。实验结果的性能曲线同意CFD结果。所提出的方法可用于峰的计算机设计,以在物理制造前提高机械性能。

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