首页> 外文会议>ASME Power Conference >NUMERICAL STUDY TO QUANTIFY THE EFFECTS OF STRUTS CENTRAL HUB ON THE PERFORMANCE OF A THREE DIMENSIONAL VERTICAL AXIS WIND TURBINE USING SLIDING MESH
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NUMERICAL STUDY TO QUANTIFY THE EFFECTS OF STRUTS CENTRAL HUB ON THE PERFORMANCE OF A THREE DIMENSIONAL VERTICAL AXIS WIND TURBINE USING SLIDING MESH

机译:用滑动网格量化Struts&Central Hub对三维垂直轴风力涡轮机的性能的数值研究

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A computational fluid dynamic (CFD) analysis is carried out to investigate the effects of struts and central hub in 3D on the overall performance prediction of a three dimensional vertical axis wind turbine (VAWT) with three Darrieus H-type blades. The VAWT has the outer diameter of 2.5m and finite unit length height with expected output of 2KVA. This type of small VAWT are expected to perform better on roof tops of the built-up urban area. The analysis is carried out using sliding mesh concept in commercial CFD software 'Ansys Fluent 13'. It is observed that the struts and central hub assembly induce additional drag and generate strong vortices which caused a substantial decrease in the performance parameters of the turbine. The numerical simulation are carried out over a three dimensional VAWT with and without struts and central hub. It is found that both the cases show a similar trend of the torque ripple for any one blade while for the upstream path, on the contrary the blades experience a drop in performance from 220° to 360° due to the struts and central hub assembly. A detailed comparative analysis between both the cases is made over the TSR values range from 1.5 to 4.5. At TSR=1.5, the performance coefficient of the cases with and without struts and central hub are same. However, for the case of struts and central hub, TSR 4 and above show negative values of power coefficients.
机译:计算流体动力学(CFD)分析进行调查支柱和上有三个大流士H型叶片的三维垂直轴风力涡轮机(VAWT)的整体性能预测在3D中心毂的影响。所述VAWT具有2.5米并用2KVA的预期输出有限单位长度高度的外径。这种类型的小型垂直轴风力发电机,预计对城市建成区的屋顶有更好的表现。该分析是使用商业CFD软件“ANSYS FLUENT 13”滑移网格的概念。据观察,所述支柱和中心毂组件诱导额外的阻力并产生引起了涡轮机的性能参数的显着降低强涡流。数值模拟是在具有和不具有支柱和中心轮毂的三维VAWT进行。据发现,无论是例示出了用于任何一个叶片转矩脉动的一个类似的趋势,而对于上行路径,相反的blades遇到性能下降,由220°至360°,由于支柱和中心毂组件。两种情况之间的详细比较分析了在TSR值的范围从1.5至4.5。在TSR = 1.5,具有和不具有支柱和中心轮毂的情况下,性能系数是相同的。然而,对于以上功率系数的显示负值支柱的情况下和中心毂,TSR 4。

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