Department of Engineering Physics, University of Wisconsin-Madison, Madison, WI, United States of America.
Bioinspir Biomim. 2021 Jun 14;16(4). doi: 10.1088/1748-3190/ac011f.
An unsupervised machine learning strategy is developed to automatically cluster the vortex wakes of bio-inspired propulsors into groups of similar propulsive thrust and efficiency metrics. A pitching and heaving foil is simulated via computational fluid dynamics with 121 unique kinematics by varying the frequency, heaving amplitude, and pitching amplitude. A Reynolds averaged Navier-Stokes model is employed to simulate the flow over the oscillating foils at Re = 10, computing the propulsive efficiency, thrust coefficient and the unsteady vorticity wake signature. Using a pairwise Pearson correlation it is found that the Strouhal number most strongly influences the thrust coefficient, whereas the relative angle of attack, defined by both the mid-stroke and maximum have the most significant impact on propulsive efficiency. Next, the various kinematics are automatically clustered into distinct groups exclusively using the vorticity footprint in the wake. A convolutional autoencoder is developed to reduce vortex wake images to their most significant features, and a-means++ algorithm performs the clustering. The results are assessed by comparing clusters to a thrust versus propulsive efficiency map, which confirms that wakes of similar performance metrics are successfully clustered together. This automated clustering has the potential to identify complex vorticity patterns in the wake and modes of propulsion not easily discerned from traditional classification methods.
开发了一种无监督机器学习策略,以自动将仿生推进器的涡流尾迹聚类为具有相似推进力和效率指标的组。通过改变频率、升沉幅度和俯仰幅度,对俯仰和升沉翼片进行计算流体动力学模拟,具有 121 个独特的运动学。采用雷诺平均纳维-斯托克斯模型模拟振荡翼片上的流动,在 Re = 10 下计算推进效率、推力系数和非定常涡尾迹特征。通过使用成对 Pearson 相关系数发现,斯特劳哈尔数对推力系数的影响最大,而由中冲程和最大冲程定义的相对攻角对推进效率的影响最大。接下来,仅使用尾迹中的涡旋足迹自动将各种运动学聚类为不同的组。开发了卷积自动编码器将涡尾迹图像简化为其最重要的特征,并使用 a-means++算法进行聚类。通过将聚类与推力与推进效率图进行比较来评估结果,这证实了具有相似性能指标的尾迹已成功聚类在一起。这种自动聚类有可能识别出传统分类方法不易察觉的复杂尾迹涡旋模式和推进模式。