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The Rolled-up and Tip Vortices Studies in the CFD Model of the 3-D Swept-Backward Wind Turbine Blades

机译:3-D扫向上风力涡轮机叶片的CFD模型中的卷起和提示涡流研究

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In this paper, the method to analyze of vortex dynamics simulation of 3-D (three dimensional) backward wind turbine blades is introduced, consisted of flow visualization part and detailed measurement part. With this method, one could explain visually and by calculation the role of 3-D flow vortex mechanism patterns on 3-D backward wind turbine blade, the interchange between kinetic and potential energies, the utilization of very strong vortex, which could lose energy, generate lift, and produce tangential mechanical power. The method could be elucidated by analyzing the appearance of rolled-up vortex effect on the 3-D backward wind turbine blades. A sharp pointed backward blade, generally has a weak tip vortex, may generate a second weak vortex center, and appears due to the rolled-up vortex effect, which is quite difficult to identify. The weakness of tip vortex makes the sharp pointed blade more efficient to exchange energy. Blunt backward turbine blades generally have a strong vortex center, a tip vortex; which in the form of a vortex core. Due to the rolled-up vortex effect, it could generate a second weak vortex center that is clearly visible.
机译:本文介绍了三维(三维)向后风力涡轮机叶片的涡旋动力学模拟的方法,包括流量可视化部分和详细的测量部分。通过这种方法,可以通过这种方法来解释,通过计算3-D落后风力涡轮机叶片的三维流动涡流机构模式的作用,动力学和潜在能量之间的交换,利用非常强大的涡流,这可能失去能量,产生升力,并产生切向机械动力。通过分析对3-D向后风力涡轮机叶片的卷起涡流效应的外观,可以阐明该方法。尖锐的向后叶片通常具有弱尖涡,可以产生第二弱涡旋中心,并且由于卷起的涡流效应而出现,这很难识别。尖端涡旋的弱点使得尖锐的刀片更有效地交换能量。钝的向后涡轮机叶片通常具有强大的涡旋中心,尖端涡旋;以涡旋核心的形式。由于卷起的涡流效果,它可以产生一个清晰可见的第二个弱涡旋中心。

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