论文标题
用主动襟翼暴跌箔中的模式竞争:一种多尺度模态分析方法
Mode Competition in a Plunging Foil with an Active Flap: A Multi-Scale Modal Analysis Approach
论文作者
论文摘要
流动引起的扑动在飞机稳定性,可再生能量提取,动物运动等中具有重要作用。虽然是一种普遍存在的现象,但扑动响应的控制主要限于简化系统,并且通常借助线性无关流动理论。在本文中,我们从数值上研究了如何使用活性瓣来调节箔的下降响应,以改善结构安全性或通过紧密耦合的流体结构相互作用算法提高箔的能量提取效率。测试了广泛的箔和皮瓣设置,并研究了其流动动力学。一种适用于流体结构相互作用系统的新型多尺度模态分析技术成功地隔离了活动皮瓣诱导的模式和流动诱导的模式。据观察,这两种模式之间的竞争决定了箔的下降反应。活性瓣可以以更大的拍打振幅调节前缘涡流脱落并调节箔牵引运动。提出了竞争模态能量的比率来评估变形表面的控制功效,并且锁定的开始与统一的比率相关。结果表明,变形瓣是主动流控制的良好候选者。
The flow-induced flutter has a significant role in aircraft stability, renewable energy extraction, animal locomotion, among many other applications. While being a ubiquitous phenomenon, the control of the flutter response has been primarily limited to simplified systems and, often, with the help of linear inviscid flow theories. In this paper, we numerically investigate how the plunging response of a foil can be regulated using an active flap to improve structural safety or enhance the energy extraction efficiency of the foil with a tightly coupled fluid-structure interaction algorithm. A broad range of foil and flap settings was tested and their flow dynamics have been investigated. A novel multi-scale modal analysis technique suitable for fluid-structure interaction systems successfully isolates the active flap-induced and the flow-induced modes. It is observed that the competition between these two modes dictates the plunging response of the foil. The active flap can modulate the leading edge vortex shedding with larger flapping amplitude and regulate the foil heaving motion. The ratio of the competing modal energy is proposed to evaluate the control efficacy of the morphing surface, and the onset of the lock-in is associated with the ratio approaching unity. It is shown that the morphing flap is a good candidate for active flow control.