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水力发电学报 ›› 2019, Vol. 38 ›› Issue (4): 256-264.doi: 10.11660/slfdxb.20190424

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垂直轴螺旋三角型叶轮的水动力学性能分析

  

  • 出版日期:2019-04-25 发布日期:2019-04-25

Hydrodynamic performance analysis of vertical axis helical triangular blades

  • Online:2019-04-25 Published:2019-04-25

摘要: 为改进直叶片垂直轴潮流能水轮机能量输出稳定性差的缺点,一种螺旋“三角型”叶轮被引入用以替代传统直叶片H型叶轮。首先分别以半叶高螺旋周向包角为15°、30°、45°及60°作为设计特征设计获得四种螺旋“三角型”叶轮,然后以计算流体动力学理论为基础研究了半叶高螺旋包角对螺旋“三角型”叶轮水力性能的影响规律。通过研究发现,叶轮改型之后的能量捕获系数有了不同程度的提升,其中改型叶轮在大尖速比工况下的能量捕获系数提升最明显,同时,螺旋包角越大,叶轮功率输出越稳定。经过综合对比,具有15°螺旋包角的叶轮性能最佳,其能量捕获系数的时均值最大提升率为13.4%,且能量输出稳定性也获得改善。此外,通过叶轮改型前后的内流场对比发现,螺旋叶轮不仅有效地减小了叶片尾涡的尺寸和范围,也减小了叶片上水压力脉动的幅值,有利于机组运行稳定性的提高,因此,螺旋“三角型”叶轮可作为一种替代传统H型直叶片叶轮的改进结构在潮流能开发过程中推广。

关键词: 潮流能, 垂直轴水轮机, 螺旋叶片, 能量特性, 压力脉动

Abstract: This paper describes a new runner with helical triangular blades that enhances the stability of energy output of vertical axis hydraulic turbines and improves the traditional straight blade H-type runner. In this work, we design four helical triangular blades of different helical warp angles of 15°, 30°, 45° and 60° at mid-span, and examine the influence of warp angles on the hydraulic performance of these blades using computational fluid dynamics analysis. The results reveal that this type of blades increases the power coefficients of the runner and the improvement is most obvious in the condition of large tip speed ratios. And a greater helical warp angle leads to a more stable power output of the runner. A comprehensive comparison shows that a runner with the warp angle of 15° has the best performance, increasing its power coefficients by up to 13.4%; and its stability of energy output is also improved. We compare the vorticity fields between the traditional and modified runners and find out that the helical triangular blade effectively reduces the sizes of the blade wake vortices and the amplitudes of pressure fluctuations on blade surface. All our results indicate that the helical triangular blades help improve the operation stability of vertical axis hydraulic turbines, and that the modified runner, as a tidal energy device, could be adopted to replace the traditional one.

Key words: tidal energy, vertical axis water turbine, helical blade, energy characteristics, pressure fluctuation

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