首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part M. Journal of Engineering for the Maritime Environment >Experimental study on axial load transfer behavior of a coiled tubing stuck in a marine riser
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Experimental study on axial load transfer behavior of a coiled tubing stuck in a marine riser

机译:卡在船用立管中的连续油管轴向载荷传递特性的实验研究

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摘要

After years of using, the marine riser would need pigging operation to remove wax and other debris attached to its interior to recover production. Due to its low stiffness, coiled tubing would buckle when performing the marine riser pigging operation, which would make the injecting force not able to completely transfer into its end and finally damage coiled tubing and riser. Thus, in order to ensure the safety and reliability of the operation, this article reports an experimental study on this topic by building an indoor pipe-in-pipe platform. According to the experimental results, the inner pipe's axial force transfer efficiency is always less than 1. When injecting force is less than the inner pipe's critical helical buckling load, the inner pipe's axial load transfer efficiency is basically the same under unfixed boundary and fixed boundary at the same force-out. When injecting force is bigger than the inner pipe's critical helical buckling load, unfixed boundary would help decrease the inner pipe's axial load transfer efficiency; when the injecting force is three times the critical helical buckling load, the inner pipe's axial load transfer efficiency of unfixed boundary can be 3% smaller than that of fixed boundary. As the outer pipe of unfixed boundary would elongate, its axial load transfer would be delay compared with fixed boundary, which means injected displacement of unfixed boundary inner pipe would be bigger than those of fixed boundary at the same force-out. The research done above might provide important theoretical supports for the marine riser pigging operation.
机译:经过多年的使用,船用立管将需要清管操作,以清除附着在其内部的蜡和其他杂物,以恢复生产。由于其刚性低,在执行船用立管清管操作时,连续油管会弯曲,这将使注入力无法完全传递到其末端,最终损坏连续油管和立管。因此,为了确保操作的安全性和可靠性,本文通过构建室内管道系统平台对这一主题进行了实验研究。根据实验结果,内管的轴向力传递效率始终小于1。当注入力小于内管的临界螺旋屈曲载荷时,内管的轴向载荷传递效率在固定边界和固定边界下基本相同。在同样的压力下当注入力大于内管的临界螺旋屈曲载荷时,不固定的边界将有助于降低内管的轴向载荷传递效率。当注入力是临界螺旋屈曲载荷的三倍时,未固定边界的内管轴向载荷传递效率可以比固定边界小3%。由于未固定边界的外管会拉长,因此与固定边界相比,其轴向载荷传递会有所延迟,这意味着在相同的力作用下,未固定边界的内管的注入位移会大于固定边界的注入位移。以上研究可为海上立管清管作业提供重要的理论支持。

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