首页> 外文会议>Society of Petroleum Engineers Canadian Unconventional Resources Conference >Successful Application of MPD (Managed Pressure Drilling) for Prevention, Control, and Detection of Borehole Ballooning in Tight Gas Reservoir inCuervito Field, Mexico
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Successful Application of MPD (Managed Pressure Drilling) for Prevention, Control, and Detection of Borehole Ballooning in Tight Gas Reservoir inCuervito Field, Mexico

机译:MPD(托管压力钻井)的成功应用预防,控制和检测钻孔膨胀,墨西哥紧身储质池膨胀

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The design of the wells in Cuervito Field is generally composed of three casings, in order to access the highest yieldingsands. Drilling operations are characterized by the presence of a balloning effect, causing the loss of circulation thatoccasionally difficult meeting the planned target for the well.The balloning effect, breathing formation or phenomenon of loss and gain, is an elastoplastic behavior of the walls of a wellthat usually originates in impermeable formations. When circulating drilling fluids it creates an additional pressure that iscommonly defined as the equivalent circulation density (ECD), which when imposed on the walls of the well, causes them todilate. When circulation is stopped, the ECD decreases, the diameter of the hole shrinks along with the pressure, creating aflow return to the well. High temperatures also play a role in the balloning effect. The expansion and contraction of the holesin the Cuervito Field is highly remarkable.In order to minimize the encountered problems and to optimize drilling operations, a series of steps were prepared in order tostudy Cuervito Field's 16 wells. This study contains geological and geopressure information. As a result of this study twodifferent options were encountered: (i) Adding an additional casing or (ii) An unconventional drilling technique.The first alternative (adding an additional casing to the well) proved to be a more complex and less elegant solution whencompared to the unconventional drilling technique.The unconventional drilling technique known as Managed Pressure Drilling (MPD), enables the control of the annularpressure profile and monitors the bottom pressure limits in order to maintain them at a constant level, while minimizingdrilling fluid loss and drilling downtime.During the drilling of the well 17 of Cuervito Field the effect balloning was presented in large scale and was implemented apilot project to evaluate the technique of MPD. The result was successful and was applied in the following three wells in theField, achieving the elimination of the typical problems of the area.
机译:Cuervito领域中的孔的设计通常由三个肠衣组成,以便获得最高屈服和。钻井作业的特点是存在投球效果,导致循环损失,即难以满足井的计划目标。损失和增益的呼吸效果,呼吸的形成或现象,是一个健康墙的弹性塑性行为通常源于不透水的地层。当循环钻井液时,它产生额外的压力,额外的压力被定义为等效的循环密度(ECD),当施加在井的墙壁上时,使它们产生待多样化。当停止循环时,ECD降低,孔的直径随着压力而缩小,产生了恢复井。高温也在投球效果中发挥作用。 Cuervito领域的孔子的膨胀和收缩是非常显着的。为了最大限度地减少遇到的问题并优化钻井操作,编写了一系列步骤,以扭曲的Cuervito Field的16个井。本研究包含地质和地质信息。由于这项研究遇到了两种转化选项:(i)添加额外的壳体或(ii)一个非常规钻井技术。第一替代(增加额外的套管到井)被证明是一种更复杂,更不优雅的解决方案对于非传统的钻井技术。称为托管压力钻孔(MPD)的非传统钻井技术使得能够控制环形压力轮廓并监视底部压力限制,以便在恒定水平处保持它们,同时最小化液体损失和钻井停机时间。在Cuervito领域的17井中钻孔期间,效果轻弹以大规模提出,并实施了ApiLot项目以评估MPD的技术。结果是成功的,并应用于在菲尔德的三个井中,实现了消除该地区的典型问题。

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