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Surge and Swab Pressures in Horizontal and Inclined Wells

机译:水平和倾斜的井中的浪涌和棉签压力

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Surge and swab pressures generated during well construction operations are critical. As thousands of wells are drilled every year, challenges associated with downhole pressure management have become more important for the oil industry. Inadequate estimation of surge and swab pressures can lead to a number of costly drilling problems such as lost circulation due to formation fracture, fluid influx resulting in kicks, breakdown of the formation at shoe due to limited kick tolerance or blowouts. An accurate surge pressure model is very important in planning drilling operations, mainly in wells with narrow safe pressure window, slimholes, low-clearance casings, deepwater, and extended-reach well applications. Existing surge/swab pressure models assume concentric wellbore. This assumption is hardly ever valid in horizontal and inclined wells with some degree of eccentricity. Ignoring the pressure reducing effect of eccentricity on surge and swab pressures may eventually lead to underestimating the tripping speeds, and thereby increase non-productive time and operation costs. Eccentricity between the wellbore and the drillpipe adds more complexity to surge and swab pressure calculations. Recent studies have indicated that surge pressure can be significantly reduced due to eccentricity. Although the numerical investigation shows encouraging results, understanding of pressure surges in wells with eccentric annular geometry is very limited. This paper presents the results of experimental investigations conducted to study the effects of eccentricity on surge and swab pressures. Experiments were performed in a test setup, which consists of fully transparent polycarbonate tubing, and inner pipe that moves axially using a speed controlled hoisting system. During the experiments, test fluid viscosity, trip speed, and eccentricity were varied. Experimental results were compared with predictions of existing models showing a satisfactory agreement. Results confirm that trip speed, fluid rheological properties, annular clearance and eccentricity significantly affect the surge pressure. In some cases, eccentricity can reduce surge and swab pressure by around 40%. Applying regression analysis, a generalized correlation has been developed to account for the reduction in surge pressure due to the eccentricity of the drillpipe.
机译:在良好的施工操作期间产生的浪涌和拭子压力是至关重要的。随着每年钻的数千井,与井下压力管理相关的挑战对石油工业变得更加重要。估计浪涌和拭子压力的不足可能导致许多昂贵的钻井问题,例如由于地层骨折导致的循环,液体涌入导致踢球,由于踢耐受性或井喷有限,鞋子的形成崩溃。精确的浪涌压力模型对于规划钻井作业非常重要,主要是井中的井,狭窄的安全压力窗口,泥洞,低间隙外壳,深水和延伸井应用。现有的浪涌/拭子压力模型假设同心井筒。这种假设在水平和倾斜的井中几乎没有有效,具有一定程度的偏心。忽略偏心对浪涌的减压效果,并且拭子压力最终可能导致低估跳闸速度,从而增加非生产时间和运营成本。井筒和钻石之间的偏心率增加了浪涌和拭子压力计算的复杂性。最近的研究表明,由于偏心,可能会显着降低浪涌压力。虽然数值调查显示了令人鼓舞的结果,但是对偏心环形几何形状的井中的压力浪涌的理解非常有限。本文介绍了对研究偏心对浪涌和棉签压力的影响的实验研究结果。在测试装置中进行实验,该试验装置包括完全透明的聚碳酸酯管,以及使用速度控制的提升系统轴向移动的内管。在实验期间,变化了测试流体粘度,跳闸速度和偏心率。将实验结果与现有模型的预测进行了比较,显示出令人满意的协议。结果证实,跳闸速度,流体流变性能,环形间隙和偏心率显着影响浪涌压力。在某些情况下,偏心率可以将喘振和拭子压力降低约40%。应用回归分析,已经开发了广义相关性以解释由于钻石的偏心引起的喘振压力。

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