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Direct Observation of Odometer Trajectory When Passing over Weld in Oil and Gas Pipeline

机译:油气管道焊接过程中里程表轨迹的直接观察

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摘要

An odometer is an important part of a pipeline inspection gauge (pig) for measuring distance and defining the position of pipeline defects. Due to the peculiarity of their construction, odometers are prone to unbounded cumulative errors during pigging, and the weld is the main reason for this type of error. As a result, research on the odometer's motion when passing over a weld is essential for improving its accuracy and has attracted much more attention than before. In this paper, the trajectory of an odometer crossing over a weld was directly observed by a high-speed camera, and different trajectories with variations in translational velocity were proposed based on the experimental results. The effects of translational velocity, pretightening force, and spring rate on the odometer's trajectory were investigated. Experimental results indicate that a bouncing phenomenon occurred at a high translational velocity. A secondary jump, third jump, and even more jumps can be observed with increments of translational velocity. High pigging velocity can increase odometer error due to a serious collision, but this error can be restrained by a large pretightening force. Compared with the translational velocity and pretightening force, the spring rate has almost no influence on the odometer's error due to limited spring compression. Research results in this paper can provide better understanding of the motion of the odometer and contribute to finding a way to improve the accuracy of the odometer wheel system. (C) 2018 American Society of Civil Engineers.
机译:里程表是管道检查规(pig)的重要组成部分,用于测量距离和定义管道缺陷的位置。由于其结构的特殊性,里程表在清管过程中容易产生无限的累积误差,而焊接是造成此类误差的主要原因。因此,对里程表在通过焊缝时的运动进行研究对于提高其准确性至关重要,并且比以前引起了更多的关注。在本文中,通过高速摄像机直接观察了里程表横穿焊缝的轨迹,并根据实验结果提出了平移速度变化的不同轨迹。研究了平移速度,预紧力和弹簧刚度对里程表轨迹的影响。实验结果表明,在高平移速度下会出现弹跳现象。随着平移速度的增加,可以观察到第二跳,第三跳,甚至更多的跳。高清管速度会由于严重的碰撞而增加里程表误差,但是此误差可以通过较大的预紧力来抑制。与平移速度和预紧力相比,由于弹簧压缩有限,弹簧刚度对里程表的误差几乎没有影响。本文的研究结果可以更好地理解里程表的运动,并有助于找到提高里程表轮系精度的方法。 (C)2018美国土木工程师学会。

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