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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Investigation into the relationship of the overlap ratio and shift angle of double stage three bladed vertical axis wind turbine (VAWT)
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Investigation into the relationship of the overlap ratio and shift angle of double stage three bladed vertical axis wind turbine (VAWT)

机译:双级三叶片垂直轴风力发电机(VAWT)的重叠比与移动角的关系研究

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This study presents the experimental test results of Savonius-type vertical axis wind turbines (VAWT) with different overlap ratios and shift angles. Each wind turbine was tested under four different wind speeds. The power coefficients (C _P) of vertical axis wind turbines are governed by several key factors, e.g. the number of blades, the shape of the blades, the overlap ratio (OL) and the phase shift angle. The overlap ratio and the phase shift angle (PSA) are the most decisive ones since the measured data shows that their power coefficient drops or rises with them significantly. Three turbines with the overlap ratios of 0, 0.16 and 0.32 were designed and constructed. The wind turbines were then adjusted to the phase shift angles (PSA) of 0, 15, 30, 45 and 60 degrees before testing them in an open wind tunnel under the air velocities of 4m/s, 6m/s, 8m/s and 10m/s. The results show that a higher overlap ratio has a higher impact on improving the starting characteristics of the Savonius wind turbine than any phase shift angle changes. This investigation shows that a specific phase shift angle in relation to a specific air velocity will increase the power coefficient significantly. Besides the increase of the power coefficient seen at specific air velocities and phase shift angles, did the recorded data show an unexpected second performance peak which appeared at higher tip speed ratios. This is surprising since the Savonius turbine is considered as being a drag driven turbine, and suggests that the lift characteristics of Savonius turbines might be more significant than commonly considered.
机译:本研究提出了具有不同重叠比和偏移角的Savonius型垂直轴风力涡轮机(VAWT)的实验测试结果。每个风力涡轮机都在四种不同的风速下进行了测试。垂直轴风力涡轮机的功率系数(C_P)受几个关键因素控制,例如叶片的数量,叶片的形状,重叠率(OL)和相移角。重叠比和相移角(PSA)是最决定性的参数,因为测量数据表明它们的功率系数随它们显着下降或上升。设计并制造了三种重叠率分别为0、0.16和0.32的涡轮机。然后将风轮机调整到0、15、30、45和60度的相移角(PSA),然后在风速为4m / s,6m / s,8m / s和8m / s的露天风洞中对其进行测试。 10m / s。结果表明,与任何相移角变化相比,更高的重叠率对改善Savonius风力发电机的启动特性具有更大的影响。该研究表明,相对于特定空气速度的特定相移角将显着增加功率系数。除了在特定的风速和相移角处看到的功率系数增加之外,记录的数据是否还显示出意外的第二性能峰,该峰出现在较高的叶尖速比下。这是令人惊讶的,因为Savonius涡轮机被视为拖曳式涡轮机,并且表明Savonius涡轮机的升力特性可能比通常考虑的更为重要。

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