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Computational study to assess the influence of overlap ratio on static torque characteristics of a vertical axis wind turbine

机译:计算研究以评估重叠比对垂直轴风力涡轮机静态扭矩特性的影响

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This paper presents an unsteady two-dimensional computational study in order to observe the effect of overlap ratios on static torque characteristics of a vertical axis wind turbine (VAWT). The study is performed with the help of a finite volume based computational fluid dynamics (CFD) software package Fluent 6.3. The computational model is a two-bladed conventional VAWT having overlap ratios of 0, 0.10, 0.15, 0.20, 0.25 and 0.30. Initially, a comparative analysis is made using various k-e turbulence models and then the results are compared with the experimental data available in literature. A realizable k — e turbulence model with enhanced wall treatment is found suitable for further computational analysis. The flow field around the turbine model is also studied with the help of static pressure contour analysis. Based on this computational study, it is realized that an overlap ratio of 0.20 eliminates the effects of negative static torque coefficient, provides a low static torque variation at different turbine angular positions and also gives a higher mean static torque coefficient as compared to the other overlap ratios.
机译:本文呈现以观察上的垂直轴风力涡轮机(VAWT)的静态转矩特性的重叠率的效果不稳定二维计算研究。该研究用有限体积基于计算流体动力学(CFD)软件包流利6.3的帮助下执行的。计算模型是具有重叠的0,0.10,0.15,0.20,0.25和0.30比的双叶片常规VAWT。首先,比较分析使用各种K-é湍流模型进行,然后将结果与在文献中获得的实验数据进行比较。可实现的k - 具有增强壁处理E湍流模型是发现适合于进一步计算分析。周围的水轮机模型的流场进行了研究与静压轮廓分析的帮助。在此基础上计算研究,应该认识到的0.20消除重叠比负的静扭矩系数的效果,提供了在不同的涡轮机的角位置的低静态转矩变动和相比于其他重叠也给出了较高的平均静转矩系数比。

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