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首页> 外文期刊>Journal of Vibration and Acoustics >Experimental Study on Flow-Induced Full-Field Vibration of a Flexible Splitter Plate Behind a Cylinder Using Stereo-Digital Image Correlation
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Experimental Study on Flow-Induced Full-Field Vibration of a Flexible Splitter Plate Behind a Cylinder Using Stereo-Digital Image Correlation

机译:使用立体数字图像相关性柔性分离器板流动诱导全场振动的实验研究

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摘要

The flow-induced vibration of a flexible splitter plate behind a circular cylinder is investigated experimentally in this study. Unlike previous studies that mainly devoted to flow dynamics, the full-field three-dimensional (3D) dynamic deformation of a splitter plate behind a cylinder in the wind tunnel is measured with an easy-to-implement, compact but practical single-camera highspeed (SCHS) stereo-digital image correlation (DIC) system. The system parameters of the wind tunnel, the configuration of the SCHS-DIC system, and the measurement principles are introduced first. Then, the effectiveness, accuracy, and stability of the SCHS stereo-DIC system are verified by the deformation measurements of the high-stiffness fixed cylinder. Finally, the full-field dynamic 3D deformation measurements of different splitter plates are carried out under different wind speeds. Results of the polyvinyl chloride (PVC) splitter plate show that the out-of-plane deformation is much larger than in-plane deformation. The maximum deformation occurs at the tip region of the plate, the position of which can move non-periodically along the free-end edge. The full-field deformation of the plate presents the characteristics of complex vortex distribution with high and low fluctuations, and exhibits an asymmetric and non-periodic oscillation in the out-of-plane direction. The comparison results reveal how the wind load and material type of the plate affect the oscillation characteristics.
机译:在本研究中实验研究了圆筒后面的柔性分离板的流动诱导的振动。与以前的研究不同,主要致力于流动动态,通过易于实现的压力但实用的单摄像件高速测量风隧道中的圆柱体后面的分离板的全场三维(3D)动态变形。 (SCHS)立体数字图像相关(DIC)系统。首先介绍了风洞的系统参数,SCHS-DIC系统的配置和测量原理。然后,通过高刚度固定圆柱的变形测量​​来验证SCHS立体声DIC系统的有效性,准确性和稳定性。最后,在不同的风速下执行不同分离器板的全场动态3D变形测量。聚氯乙烯(PVC)分离板的结果表明,平面外变形远大于面内变形。最大变形发生在板的尖端区域,其位置可以沿着自由端边缘非周期性地移动。板的全场变形呈现出具有高且低波动的复杂涡旋分布的特性,并且在平面外方向上表现出不对称和非周期性振荡。比较结果揭示了盘子的风力负荷和材料类型如何影响振荡特性。

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