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Safety analysis of completion tubing considering water hammer effect

机译:考虑水锤效应的完工管安全分析

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Water hammer effect always cause excessive pressure and stress which will endanger the whole string system, for example fatigue damage, wear and tear damage and cracking damage. During well startup or shutdown, instantaneous changes of tubing's internal pressure will bring water hammer effect,so cause acute tubing vibration. So far there have few literatures to make quantitative analysis for the vibration caused by water hammer. This paper introduces improved four equation model analysis which can analyze water hammer effect accurately. According to the field experiment data,comparing the difference of vibration degree between the moment of water hammer effect and non water hammer effect. By finite element software this paper achieves vibration model diagram, natural frequency, and the stress distribution at dangerous moment after vibration acceleration is forced to the model. Finally taking stress as evaluation index to evaluate the safety of completion tubing under water hammer effect. The results show that, with water hammer effect completion tubing vibration is more intense, and occur destructive resonance easily, even cause plastic deformation of tubing.
机译:水锤效果始终造成过度的压力和压力,这将危及整个弦系统,例如疲劳损坏,磨损和撕裂损坏和破裂损坏。在良好的启动或关闭期间,管道内压的瞬时变化将带来水锤效果,因此导致急性管道振动。到目前为止,有很少的文献可以对水锤引起的振动进行定量分析。本文介绍了改进的四方程模型分析,可准确分析水锤效果。根据现场实验数据,比较水锤效应的振动程度和非水锤效应之间的振动程度。通过有限元软件本文实现了振动加速后危险时刻的振动模型图,固有频率和应力分布。最后采取压力作为评估指标,以评估水锤效应下完成管的安全性。结果表明,随着水锤效应完成管振动更加强烈,并且容易发生破坏性共振,甚至引起塑性变形的管道。

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