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Investigations into the coiled tubing partial underbalanced drilling (CT-PUBD) technique for drilling hard formations

机译:调查钻孔钻孔钻孔钻孔钻孔(CT-PUBD)技术

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摘要

Abstract To improve the rate of penetration (ROP) in drilling deep and hard formations, this paper proposes a new drilling method called coiled tubing partial underbalanced drilling (CT-PUBD). As a preliminary investigation into the new drilling method, this paper presents predictions of hole cleaning efficiency, drilling speed, cuttings migration and pressure loss in the drilling process with CT-PUBD. Based on numerical simulation and full-scale experimental studies, we conclude that using CT-PUBD, an underbalanced drilling condition can be achieved near the bit while maintaining wellbore safety at the same time. This condition can be achieved using a cuttings discharge device, a rotary packer and a backflow controller. According to the numerical simulations performed in this study, CT-PUBD can achieve high efficiency of hole cleaning. Along the cuttings migration process, the fluid velocities can reach the maximum values in the backflow holes. A full-scale laboratory experimental system was used to test the hydraulic characteristics and obtain the drilling performance of the new technology. The result shows that CT-PUBD significantly improves the ROP compared to the conventional drilling method.
机译:摘要为了提高钻孔深层和硬形状的渗透率(ROP),提出了一种新的钻孔方法,称为盘管部分欠平衡钻井(CT-PUBD)。作为新钻探方法的初步调查,本文介绍了CT-PUBD钻井过程中钻孔清洁效率,钻井速度,切割迁移和压力损失的预测。基于数值模拟和全规模的实验研究,我们得出结论,使用CT-PUBD,可以在此接近钻井间钻井条件,同时保持井筒安全性。这种情况可以使用切屑放电装置,旋转封隔器和回流控制器来实现。根据本研究中进行的数值模拟,CT-PUBD可以实现高效率的孔清洁。沿着切割迁移过程,流体速度可以达到回流孔中的最大值。全级实验室实验系统用于测试液压特性并获得新技术的钻井性能。结果表明,与传统的钻孔方法相比,CT-PUBD显着改善了ROP。

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