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Longitudinal Vortex Wind Turbine: Effect of the Blade Lengths

机译:纵向涡旋风力涡轮机:叶片长度的影响

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The longitudinal vortex wind turbine (LV-WT) is a novel propeller type, but the turbine blade is the circular cylinder. The blade is driven by lift force of the longitudinal vortex (LV). This work is to examine a simple single-cylinder blade to suppress the negative driving-force portion by cutting and keeping only the useful area. Unsteady Reynolds-Averaged Navier-Stokes (URANS) simulation is used for investigation. For the original single blade, the positive driving force was generated around the dominance of the LV at the crossing section. Meanwhile, the negative driving force appears far from the ring regime. When the original blade is diminished to avoid the unpleasant parts, the negative regions are suppressed completely. The distribution of the aerodynamic forces along the blade length is symmetric for the length extended equally. Final, the equally extended blade with the length of three times of the ring width is built and tested in the wind tunnel. The tendency of the experimental data and the CFD results correlate very well.
机译:纵向涡旋风力涡轮机(LV-WT)是一种新型螺旋桨式,但涡轮叶片是圆柱形。叶片由纵向涡旋(LV)的提升力驱动。这项工作是检查简单的单缸刀片,通过切割和保持有用的区域来抑制负驱动力部分。不稳定的Reynolds-Iveriged Navier-Stokes(urans)模拟用于调查。对于原始单刀片,围绕交叉部分的LV的优势产生正驱动力。同时,负驱动力远离振铃制度。当原始刀片减少以避免令人不愉快的部件时,完全抑制负区域。沿着叶片长度的空气动力的分布对于平等对称的长度是对称的。最终,在风隧道中建立和测试具有长度的三次长度的延伸刀片。实验数据和CFD结果的趋势非常好。

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