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Numerical Characterization of the Annular Flow Behavior and Pressure Loss in Deepwater Drilling Riser

机译:深水钻井提升管环形流动性能和压力损失的数值表征

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摘要

In drilling a deepwater well, the mud density window is narrow, which needs a precise pressure control to drill the well to its designed depth. Therefore, an accurate characterization of annular flow between the drilling riser and drilling string is critical in well control and drilling safety. Many other factors influencing the change of drilling pressure that should be but have not been studied suffi-ciently. We used numerical method to simulate the process of drill string rotation and vibration in the riser to show that the rotation and transverse vibration of drill string can increase the axial velocity in the annulus, which results in the improve- ment of the flow field in the annulus, and the effect on pressure loss and its fluc-tuation amplitude. In addition, there are also multiple secondary flow vortices in the riser annulus under certain eccentricity conditions, which is different from the phenomenon in an ordinary wellbore. The findings of this research are critical in safely controlling well drilling operation in the deepwater environment.
机译:在深水钻井时,泥浆密度窗口窄,需要精确的压力控制,以钻孔井至其设计深度。因此,在钻孔提升管和钻孔串之间的环形流动的精确表征在良好的控制和钻孔安全方面是至关重要的。许多影响应该是钻孔压力变化的其他因素,但尚未进行。我们使用了数值方法来模拟钻柱旋转和振动在提升板中的过程,表明钻柱的旋转和横向振动可以增加环的轴向速度,这导致流场中的改进环形,以及对压力损失的影响及其熔体增加幅度。另外,在某些偏心条件下的提升管环中还存在多个二次流动涡流,这与普通井筒中的现象不同。该研究的发现对于安全控制深水环境中的钻井操作至关重要。

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