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Measurement of rivulet movement and thickness on inclined cable using videogrammetry

机译:使用视频测量仪测量倾斜电缆上的小钉运动和厚度

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摘要

Stay cables in some cable-stayed bridges suffer large amplitude vibrations under the simultaneous occurrence of rain and wind. This phenomenon is called rain wind-induced vibration (RWIV). The upper rivulet oscillating circumferentially on the inclined cable surface plays an important role in this phenomenon. However, its small size and high sensitivity to wind flow make measuring rivulet size and its movement challenging. Moreover, the distribution of the rivulet along the entire cable has not been measured. This paper applies the videogrammetric technique to measure the movement and geometry dimension of the upper rivulet along the entire cable during RWIV. A cable model is tested in an open jet wind tunnel with artificial rain. RWIV is successfully reproduced. Only one digital video camera is employed and installed on the cable during the experiment. The camera records video clips of the upper rivulet and cable movements. The video clips are then transferred into a series of images, from which the positions of the cable and the upper rivulet at each time instant are identified by image processing. The thickness of the upper rivulet is also estimated. The oscillation amplitude, equilibrium position, and dominant frequency of the rivulet are presented. The relationship between cable and rivulet variations is also investigated. Results demonstrate that this non-contact, non-intrusive measurement method has good resolution and is cost effective.
机译:在同时出现雨水和风的情况下,某些斜拉桥中的斜拉索会遭受大幅度的振动。这种现象称为雨风感应振动(RWIV)。在倾斜的电缆表面上沿周向振荡的上小铆钉在此现象中起重要作用。然而,它的小尺寸和对风的高灵敏度使得测量小溪的尺寸及其运动具有挑战性。此外,还没有测量到小铆钉在整个电缆上的分布。本文应用视频测量技术来测量RWIV期间整个整个电缆上小溪的运动和几何尺寸。电缆模型在带有人工雨水的开放式喷气风洞中进行了测试。 RWIV已成功复制。在实验期间,仅使用一台数码摄像机并将其安装在电缆上。摄像机会记录上半静脉和电缆运动的视频片段。然后将视频剪辑传输到一系列图像中,通过图像处理从中识别出每个时刻电缆和上铆钉的位置。还估计了小溪的厚度。给出了小波的振荡幅度,平衡位置和主导频率。还研究了电缆和小溪变化之间的关系。结果表明,这种非接触式,非侵入式测量方法具有良好的分辨率,并且具有成本效益。

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