Measurement of Water Surface Particle Kinematics Using a Motion Tracking System

J. Murray, M. Sullivan
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Abstract

Water particle motions on the wave surface are of interest to the designer for various applications that require quantification of particle kinematics. Difficulties in predicting these kinematics lead to other alternatives such as measurements in model tests. The modelled waves themselves as generated in facilities may also be of interest. Devices to measure particle motion adopted from fluid flow measurement equipment, are generally not well suited to measure particle kinematics because of limitations in their response or intrusiveness within the wave field. This paper discusses the use of a motion tracking device to measure wave surface particle kinematics. Small spheres floating on the wave surface are tracked using an optical tracking device and their position is determined as a function of time using monitoring cameras. Tests were carried out in a series of regular and irregular waves. Measured kinematics are compared and discussed in relation to those predicted by wave theories.
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用运动跟踪系统测量水面粒子运动学
水粒子在波浪表面上的运动是设计师对各种需要量化粒子运动学的应用感兴趣的。预测这些运动学的困难导致采用其他替代方法,例如在模型试验中进行测量。在设施中产生的模拟波本身也可能令人感兴趣。流体流量测量设备中采用的测量粒子运动的装置,由于其在波场中的响应或侵入性的限制,通常不太适合测量粒子的运动学。本文讨论了用运动跟踪装置测量波浪表面粒子的运动学。用光学跟踪装置跟踪漂在波面上的小球体,用监控摄像机确定它们的位置作为时间的函数。在一系列规则波和不规则波中进行了测试。实测的运动学与波动理论预测的运动学进行了比较和讨论。
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