论文标题
弹性俯仰箔的唤醒和空气弹性
Wake and aeroelasticity of a flexible pitching foil
论文作者
论文摘要
在具有不同施加的自由流速度的风洞中,通过实验研究了进行俯仰振荡的柔性箔。基于和弦的雷诺数在1600--4000范围内,因此该系统的动力学受惯性力支配,而箔纸后面的尾流则表现出反向的Bénard-vonKármánVortex街道街道街道的特征,这是基于拍打的推进的特征。进行粒子图像速度法(PIV)测量以检查箔围绕箔的流量,同时还跟踪了箔的变形。箔的振动的第一个固有频率在探索的拍打频率范围内,确定了弹性箔变形和涡旋脱落之间的强耦合动力学。 基于群集的减少顺序建模应用于PIV数据,以识别相干流量结构。分析铝箔运动学并使用来自相应速度场的平均阻力力的控制体积计算,我们确定推力生成的最佳拍打配置。我们表明,推进力峰在无量纲频率上发生,相对于以最大后缘振荡振幅为标志的弹性共振。唤醒共振可以更好地解释推力峰,我们使用经典流体动力稳定性的工具在平均推进射流轮廓上进行了检查。
A flexible foil undergoing pitching oscillations is studied experimentally in a wind tunnel with different imposed free stream velocities. The chord-based Reynolds number is in the range 1600--4000, such that the dynamics of the system is governed by inertial forces and the wake behind the foil exhibits the reverse Bénard-von Kármán vortex street characteristic of flapping-based propulsion. Particle Image Velocimetry (PIV) measurements are performed to examine the flow around the foil, whilst the deformation of the foil is also tracked. The first natural frequency of vibration of the foil is within the range of flapping frequencies explored, determining a strongly-coupled dynamics between the elastic foil deformation and the vortex shedding. Cluster-based reduced order modelling is applied on the PIV data in order to identify the coherent flow structures. Analysing the foil kinematics and using a control-volume calculation of the average drag forces from the corresponding velocity fields, we determine the optimal flapping configurations for thrust generation. We show that propulsive force peaks occur at dimensionless frequencies shifted with respect to the elastic resonances that are marked by maximum trailing edge oscillation amplitudes. The thrust peaks are better explained by a wake resonance, which we examine using the tools of classic hydrodynamic stability on the mean propulsive jet profiles.