论文标题

缩放法律,以纯粹的倾斜箔在地面效应中的推进性能

Scaling Laws for the Propulsive Performance of a Purely Pitching Foil in Ground Effect

论文作者

Mivehchi, Amin, Zhang, Qiang, Kurt, Melike, Quinn, Daniel B., Moored, Keith W.

论文摘要

提出了用于地面效应中纯粹俯仰液压的推力生产和功耗的缩放定律。基于物理见解的地面效应缩放定律首次捕获了广泛与生物学相关的杂质数量,无尺寸幅度和无尺寸的地面距离的推进性能。这是通过推进先前的缩放定律(停泊和Quinn 2018),并以物理驱动的修改对增加的质量和循环力量来解释地面距离变化。引入的关键物理是由于其图像系统的影响而导致的箔纸系统附近的箔层增加的增加以及尾流涡流系统的影响。发现缩放定律与新的无粘性模拟和粘性实验非常吻合,可用于加速以逐个布置在接地平面附近或两个相位外箔附近振动的生物启发的水翼的设计。

Scaling laws for the thrust production and power consumption of a purely pitching hydrofoil in ground effect are presented. For the first time, ground effect scaling laws based on physical insights capture the propulsive performance over a wide range of biologically-relevant Strouhal numbers, dimensionless amplitudes, and dimensionless ground distances. This is achieved by advancing previous scaling laws (Moored & Quinn 2018) with physics-driven modifications to the added mass and circulatory forces to account for ground distance variations. The key physics introduced are the increase in the added mass of a foil near the ground and the reduction in the influence of a wake vortex system due to the influence of its image system. The scaling laws are found to be in good agreement with new inviscid simulations and viscous experiments, and can be used to accelerate the design of bio-inspired hydrofoils that oscillate near a ground plane or two out-of-phase foils in a side-by-side arrangement.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源