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Longitudinal Vibration of Deep Water Drilling Riser in Disconnected Mode

机译:断开模式下深水钻井立管纵向振动

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摘要

A drilling riser is a connecting channel in deep water drilling technology. The riser may undergo significant axial vibrations during disconnection, which in turn can lead to failure. In order to investigate the longitudinal vibration behavior of a drilling riser, we constructed a mathematical model based on the classical wave equations, solved using a finite-difference method. We have simulated the longitudinal vibration parameters for a riser under production conditions in the South China Sea as a function of location, top tension, damping coefficient, lower marine riser package (LMRP) weight, riser inner diameter, and riser length. The research results showed that longitudinal vibration increases with distance from the water surface to the LMRP and the vibration amplitude also increases with increasing top tension, riser inner diameter, and riser length, and decreases with increasing LAMP weight. As the damping coefficient increases, over time the vibration amplitude decreases compared with the initial value.
机译:钻孔提升管是深水钻井技术的连接通道。立管在断开期间可能经历显着的轴向振动,这反过来可能导致失败。为了研究钻井提升机的纵向振动行为,我们构建了一种基于经典波方程的数学模型,使用有限差分法解决。我们已经在南海的生产条件下模拟了纵向振动参数,作为位置,顶部张力,阻尼系数,降低海洋提升管包装(LMRP)重量,提升机内径和提升管长度的函数。研究结果表明,纵向振动随着从水面到LMRP的距离而增加,振动幅度也随着顶部张力,提升机内径和提升管长度的增加而增加,并且随着灯重量的增加而减小。随着阻尼系数的增加,随着时间的推移,与初始值相比,振动幅度降低。

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