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A solids-free brine drilling fluid system for coiled tubing drilling

机译:用于盘管钻井的无固体盐水钻井液系统

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AbstractThere are many problems associated with coiled tubing drilling operations, such as great circulation pressure loss inside pipe, difficulties in weight on bit (WOB) transferring, and high probability of differential sticking. Aiming at these problems, solids-free brine drilling fluid system was developed on the basis of formulation optimization with brine base fluid experiment, which was evaluated and applied to field drilling. Based on the optimization of flow pattern regulator, salt-resisting filtrate reducer, high performance lubricant and bit cleaner, the basic formula of the solids-free brine drilling fluid system was formed: brine + (0.1%?0.2%) NaOH + (0.2%?0.4%) HT-XC + (2.0%?3.0%) YLJ-1 + (0.5%?2.0%) SDNR + (1.0%?2.5%) FT-1A + (1.0%?5.0%) SD-505 + compound salt density regulator. Lab evaluation showed that the fluid had satisfactory temperature resistance (up to 150 °C), excellent cuttings tolerance (up to 25%), and strong inhibition (92.7% cuttings recovery); Moreover, its lubrication performance was similar to that of all oil-based drilling fluid. The wellbore could be fairly cleaned at annular up-flow velocity of more than 0.8 m/s if the ratio of yield point to plastic viscosity was kept above 0.5. This fluid system has been applied in the drilling of three coiled tubing sidetracking wells in the Liaohe Oilfield, during which the system was stable and easy to adjust, resulting in excellent cuttings transportation, high ROP, regular hole size, and no down hole accidents. In summary, the solids-free brine drilling fluid system can meet the technical requirements of coiled tubing drilling.
机译:摘要连续油管钻井作业存在许多问题,例如管道内很大的循环压力损失,钻头重量(WOB)转移困难以及差异卡钻的可能性高。针对这些问题,在以盐水基础液实验优化配方的基础上,开发了无固体盐水钻井液系统,并对其进行了评价并应用于野外钻井。在优化流型调节器,抗盐滤液减少剂,高性能润滑剂和钻头清洁剂的基础上,形成了无固体盐水钻井液系统的基本公式:盐水+(0.1%?0.2%)NaOH +(0.2 %?0.4%)HT-XC +(2.0%?3.0%)YLJ-1 +(0.5%?2.0%)SDNR +(1.0%?2.5%)FT-1A +(1.0%?5.0%)SD-505 +复合盐浓度调节剂。实验室评估表明,该流体具有令人满意的耐温性(最高150°C),优异的切屑耐受性(最高25%)和强抑制作用(切屑恢复率为92.7%);此外,其润滑性能与所有油基钻井液的润滑性能相似。如果屈服点与塑性粘度之比保持在0.5以上,则可以在大于0.8 m / s的环形上升流速度下合理清洁井眼。该流体系统已被应用于辽河油田的三个连续油管侧钻井的钻进过程中,该系统稳定且易于调整,从而实现了出色的钻屑运输,高ROP,规则的井眼尺寸,并且没有井下事故。综上所述,无固体盐水钻井液系统可以满足连续油管钻井的技术要求。

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