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Effect of Pipe Rotation on Hole Cleaning for Water-Based Drilling Fluids in Horizontal and Deviated Wells

机译:管道旋转对水平井井水性钻井液孔清洁的影响

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One of the major concerns during drilling horizontal and directional wells is proper hole cleaning. If there exists a stationary bed, generally, an increase in the fluid velocity will erode the bed significantly. However, depending on the drilling conditions, very high fluid velocities are needed for bed removal, which may not be applied due to hydraulic and physical limitations. In such cases, pipe rotation may enhance the cuttings transport mechanically, and effective hole cleaning can be achieved even at fluid velocities lower than the critical annular fluid velocities required to prevent stationary bed development. In this study, the effect of pipe rotation on hole cleaning is investigated for horizontal and directional wells. Cuttings transport experiments have been conducted at METU Cuttings Transport Flow Loop using pure water as well as water-based muds consist of different concentrations of xanthan biopolimer, starch, KCl and soda ash, weighted with barite. Effect of pipe rotation have been observed for hole inclinations from horizontal to 50 degrees, for rate of penetrations from 15 to 45 ft/hr, for flow velocities from 2.1 ft/s to 7.2 ft/s, and for pipe rotations from 0 to 120 rpm. Pressure drop within the test section, and stationary and/or moving bed thickness are recorded besides the other test conditions. It has been observed that, pipe rotation has a significant improvement on cuttings transport, especially if the pipe is making an orbital motion. Also, pipe rotation drastically decreases the critical fluid velocity required to remove the stationary cuttings bed totally. However, after a certain rotation speed, no additional contribution of pipe rotation on hole cleaning is observed. When there are no cuttings present, the frictional pressure losses are increasing as the pipe rotation speed is increased. However, as the cuttings are introduced, due to the reduction in the stationary cuttings bed area, frictional pressure losses may decrease. Additionally, the effect of pipe rotation on hole cleaning as a function of fluid viscosity is also examined. It has been observed that, as the fluid viscosity is increased, contribution of pipe rotation on hole cleaning is increasing when compared with no rotation case.
机译:一个钻水平和定向井过程中的主要问题是正确的清孔。如果存在一个静止的床,一般地,增加了流体速度将显著侵蚀床。然而,依赖于钻井条件,需要用于去除床,这可能不是由于被施加到液压和物理限制非常高的流体速度。在这种情况下,管旋转可以机械增强屑运输,并且能够实现有效的空穴清洁即使在流体速度比,以防止静止床发展所需的临界环形流体流速降低。在这项研究中,管旋转的上孔的清洗效果进行了研究用于水平和定向井。岩屑输送实验已经在METU屑运输流动环路使用纯水以及水基泥浆由不同浓度的黄原biopolimer,淀粉组成,KCl和纯碱,用重晶石加权已经进行。已经观察到管的旋转的效果对孔倾角从水平到50度,从15至45英尺/小时渗透的速率,流速为2.1英尺/秒到7.2英尺/秒,而对于管旋转从0到120转。测试部分内的压力降,和静止的和/或移动床的厚度被记录除了其他的测试条件。已经观察到的是,管的旋转对钻屑运输显著改进,特别是如果管道是使轨道运动。此外,管的旋转急剧下降,以除去完全床固定屑所需的临界流体速度。然而,在一定的旋转速度后,旋转管的上孔清洗没有额外的贡献是观察。当不存在切屑目前,摩擦压力损失作为管旋转速度增加增大。然而,由于切屑被引入时,由于在床面积固定屑的减少,摩擦压力损失可以减小。此外,也检查了清洗孔作为流体粘度的函数管旋转的效果。已经观察到的是,当流体粘度增加,当与没有旋转情况相比管转动上孔清洗贡献正在增加。

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