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Determination of Collar's Triangle of Forces on a Flexible Wing based on Particle Tracking Velocimetry Measurements

机译:基于粒子跟踪速度测量测量柔性翼的轴环三角形的确定

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The three components in Collar's triangle of forces (aerodynamic, elastic and inertial) acting on a flexible wing are determined, based on integrated optical measurements of the structural and the aerodynamic response to steady and unsteady periodic inflow conditions. The measurement device is a coaxial volumetric velocimeter mounted on a robotic arm, which is used to perform optical measurements of fiducial markers on the wing surface and simultaneously of helium-filled soap bubbles that are used as flow tracers. The optical measurements of the structural markers and the flow tracers are both processed with the Lagrangian particle tracking algorithm Shake-The-Box. Subsequently, physical models are used to determine the inertial and the elastic force of the aeroelastic interaction from the marker tracking results, and to determine the unsteady aerodynamic lift force from the flow velocity fields. The results of this integrated aeroelastic characterization approach are in physical agreement with each other according to the equilibrium of forces in Collar's triangle and good agreement with external reference measurements.
机译:基于结构和空气动力学响应的集成光学测量,确定在柔性翼上作用在柔性翼上的力(空气动力学,弹性和惯性的三个部件。测量装置是安装在机器人臂上的同轴体积速度计,其用于在机翼表面上的基准标记的光学测量,并同时用作流动示踪剂的氦气填充的肥皂泡。结构标记的光学测量和流示踪器都是用拉格朗日粒子跟踪算法摇盒加工的。随后,使用物理模型来确定来自标记跟踪结果的空气弹性相互作用的惯性和弹力,并确定来自流速场的不稳定空气动力升力。根据衣领三角形和外部参考测量的良好协议,这种综合空气弹性特征方法的结果彼此相协议。

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