Argentina Médéric, Mahadevan L
Division of Engineering and Applied Sciences, Harvard University, Pierce Hall, 29 Oxford Street, Cambridge, MA 02138, USA.
Proc Natl Acad Sci U S A. 2005 Feb 8;102(6):1829-34. doi: 10.1073/pnas.0408383102. Epub 2005 Jan 31.
We give an explanation for the onset of fluid-flow-induced flutter in a flag. Our theory accounts for the various physical mechanisms at work: the finite length and the small but finite bending stiffness of the flag, the unsteadiness of the flow, the added mass effect, and vortex shedding from the trailing edge. Our analysis allows us to predict a critical speed for the onset of flapping as well as the frequency of flapping. We find that in a particular limit corresponding to a low-density fluid flowing over a soft high-density flag, the flapping instability is akin to a resonance between the mode of oscillation of a rigid pivoted airfoil in a flow and a hinged-free elastic plate vibrating in its lowest mode.
我们对旗帜中流体流动引起的颤动作出了解释。我们的理论考虑了起作用的各种物理机制:旗帜的有限长度和小但有限的弯曲刚度、流动的不稳定、附加质量效应以及后缘的涡旋脱落。我们的分析使我们能够预测拍打开始的临界速度以及拍打频率。我们发现,在一个特定的极限情况下,即低密度流体流过柔软的高密度旗帜时,拍打不稳定性类似于刚性枢轴翼型在流中的振荡模式与以其最低模式振动的铰支自由弹性板之间的共振。