论文标题
倒置的悬臂板的动力学以中等攻击角度
Dynamics of an inverted cantilever plate at moderate angle of attack
论文作者
论文摘要
在实验和数值上研究了悬臂板的动力学,并以中等角度($α\ leq 30^{\ circ} $)放置在均匀流动的情况下,并提供了大量的实验数据集。该动力学显示与零角度的情况有显着不同,通常称为倒flag配置。四个不同的动态状态以有限的角度出现:围绕小型反射平衡(变形状态)的小振荡,一个小振幅的拍打运动,大振幅的拍打运动和围绕大频率平衡的小振荡(偏转状态)。随着流速的增加,小振幅拍打运动逐渐出现,并且与准稳态液体强迫引起的极限周期振荡一致。观察到大振幅拍打运动以独立于攻击角度的恒定临界流速出现。它的特性与以零攻击角度存在的大幅度涡流诱导的振动相匹配。随着攻击角的增加,板进入偏转状态的流速会降低,从而导致拍打运动在大于$α\ $ 28^{\ circ} $的攻击角度消失。最后,考虑了纵横比对板动力学的影响,降低的纵横比板被证明缺乏方案之间的鲜明区别。
The dynamics of a cantilever plate clamped at its trailing edge and placed at a moderate angle ($α\leq 30^{\circ}$) to a uniform flow are investigated experimentally and numerically, and a large experimental data set is provided. The dynamics are shown to differ significantly from the zero-angle-of-attack case, commonly called the inverted-flag configuration. Four distinct dynamical regimes arise at finite angles: a small oscillation around a small-deflection equilibrium (deformed regime), a small-amplitude flapping motion, a large-amplitude flapping motion and a small oscillation around a large-deflection equilibrium (deflected regime). The small-amplitude flapping motion appears gradually as the flow speed is increased and is consistent with a limit-cycle oscillation caused by the quasi-steady fluid forcing. The large-amplitude flapping motion is observed to appear at a constant critical flow speed that is independent of angle of attack. Its characteristics match those of the large-amplitude vortex-induced vibration present at zero angle of attack. The flow speed at which the plate enters the deflected regime decreases linearly as the angle of attack is increased, causing the flapping motion to disappear for angles of attack greater than $α\approx 28^{\circ}$. Finally, the effect of aspect ratio on the plate dynamics is considered, with reduced aspect ratio plates being shown to lack sharp distinctions between regimes.