Simplified model for helical vortex dynamics in the wake of an asymmetric rotor

IF 2.8 Q2 MECHANICS
Aliza Abraham, A. Castillo-Castellanos, T. Leweke
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引用次数: 3

Abstract

Abstract Helical vortex systems, such as those found in the wakes of wind turbines, helicopter rotors and propellers, are subject to instabilities that lead to pairing between adjacent vortex loops. Certain modes of these instabilities can be triggered by an asymmetry in the rotor generating the vortices. In three-vortex systems, like those formed by many industrial rotors, the nonlinear vortex interactions are highly complex, introducing the need for a simple model to predict their dynamics. The current study presents a model for helical vortex systems based on an infinite strip of periodically repeating point vortices, whose motion can be computed using a single equation. This highly simplified model is shown to accurately reproduce the helical vortex dynamics predicted by a more sophisticated filament model and observed in water channel experiments on model rotors. The model is then used to investigate different types of vortex perturbations. Perturbation direction is found to have an important effect on the evolution of the instability, and displacements are observed to induce vortex pairing more quickly than circulation changes. These findings can be used to design asymmetric rotors that induce vortex breakdown more effectively, mitigating detrimental wake effects such as increased fatigue loading on downstream structures.
非对称旋翼尾迹螺旋涡动力学的简化模型
螺旋涡系统,如风力涡轮机、直升机旋翼和螺旋桨尾迹中的螺旋涡系统,具有不稳定性,会导致相邻涡圈之间的配对。这些不稳定性的某些模式可以由转子产生涡流的不对称性触发。在三涡系统中,就像许多工业转子形成的系统一样,非线性涡相互作用非常复杂,需要一个简单的模型来预测它们的动力学。本文提出了一种基于无限条周期性重复点涡的螺旋涡系统模型,其运动可以用单一方程计算。这个高度简化的模型被证明能准确地再现更为复杂的细丝模型所预测的螺旋涡动力学,并在模型转子的水道实验中观察到。然后用该模型研究了不同类型的涡旋扰动。微扰方向对不稳定性的演化有重要影响,并且观测到位移比环流变化更快地诱导涡旋配对。这些发现可以用于设计更有效地诱导涡破裂的非对称转子,减轻有害的尾流效应,如增加下游结构的疲劳载荷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.40
自引率
0.00%
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