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Use of optical tracking system for measurement of dynamic model responses in a wave tank

机译:光学跟踪系统在波箱中动态模型响应的测量中的应用

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Physical modeling serves as an important tool in the development of the full scale devices especially in the oil and gas industry. Dynamic responses of the scaled model subjected to the environmental forces are obtained by testing the models in the wave tank. Conventionally accelerometers have been usedto determine the dynamic motionresponses of the model in the six degrees of freedom. However, the accelerometer has limitation that it can directly measure the translation motions only and rotation motions have to be interpreted from them. Recently developed optical tracking system has proven to be very efficient in measuring all the dynamic responses. Hence, many Laboratories use both the accelerometers and optical tracking system for mutual validation and accuracy of the measurements. In this paper, a new optical tracking system acquired by the Offshore Laboratory of UniversitiTeknologi PETRONAS (UTP), is discussed. The details of the system and the tracking procedures are presented and the paper concludes by presenting very reliable results based on these measurements.
机译:物理建模是开发全尺寸设备的重要工具,尤其是在石油和天然气工业中。通过在波浪罐中测试模型,可以获得缩放模型在环境力作用下的动态响应。传统的加速度计已被用来确定模型在六个自由度上的动态运动响应。但是,加速度计的局限性在于它只能直接测量平移运动,而旋转运动必须从中进行解释。事实证明,最近开发的光学跟踪系统在测量所有动态响应方面非常有效。因此,许多实验室将加速度计和光学跟踪系统都用于相互验证和测量的准确性。本文讨论了由UniversitiTeknologi PETRONAS(UTP)的海上实验室获得的新型光学跟踪系统。介绍了系统的详细信息和跟踪程序,并在此基础上通过基于这些测量结果给出了非常可靠的结果来得出结论。

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