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Design and application of well cementing technology based on the precise managed pressure balancing method in narrow pressure window hole sections

机译:基于精密托管压力平衡方法在窄压窗口孔部分中的井固井技术的设计与应用

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In the Sichuan Basin, the drilling of complex deep and ultradeep wells is restricted by the casing sequence. Multiple pressure systems are usually encountered in the same open hole section, and narrow safety density window is observed in vertical strata. The application of managed pressure drilling (MPD) technique which is often used in well drilling ensures the safe and efficient drilling, but it also brings about great challenges to the small-gap liner cementing at the lower part. Therefore, it is of great practical significance to research a cementing technology that can not only satisfy the quality requirement of small gap liner cementing, but also ensure the safe cementing in the strata with narrow safety density window. In this paper, a cementing technology based on precise managed pressure balancing method was proposed by referring to the successful application of MPD technique. According to the cementing design, the hydrostatic column pressure of annulus fluid is under-balanced (slightly lower than the formation pore pressure), and then a precise managed pressure drilling device is adopted to produce back pressure through wellhead restriction or apply wellhead compensation pressure, so that the balanced pore pressure can be reached in the process of cementing via the wellhead pressure and the flow friction of fluid in the annulus. After the cementing is completed, a certain compensation pressure is applied to the annulus continuously to prevent annulus channeling during waiting on cement caused by insufficient static pressure and slurry weight loss. After this technology was applied to an ultradeep exploration well in the Sichuan Basin, the qualification rate of borehole cementing quality reached 97%, and the well sections with good cementing quality accounted for 76%. In conclusion, this technology needs no additional equipment, and only by virtue of the MPD equipment, it can achieve safe cementing construction and cementing quality improvement under high displacement efficiency.
机译:在四川盆地中,复杂深和超孔井的钻孔受套管序列的限制。通常在相同的开孔部分中遇到多个压力系统,并且在垂直地层中观察到窄的安全密度窗口。良好钻井常用的管理压力钻孔(MPD)技术的应用可确保安全有效的钻孔,但它也为下部的小间隙衬垫固井带来了极大的挑战。因此,研究胶结技术是具有巨大的现实意义,这些技术不仅可以满足小间隙衬垫固井的质量要求,而且还可以确保具有狭窄安全密度窗口的地层中的安全固态。本文通过参考MPD技术的成功应用提出了一种基于精确托管压力平衡方法的固井技术。根据固井设计,环空流体的静液柱压力下平衡(比地层孔隙压力稍微降低),然后精确控制压力钻井设备通过井口限制通过,以产生反压或施加井口补偿压力,因此,可以在通过井口压力和环中的流体的流动摩擦过程中达到平衡的孔隙压力。在粘合完成之后,连续地将某个补偿压力施加到环,以防止在等待静态压力不足和浆料重量损失时等待水泥期间的环形通道。在这项技术应用于四川盆地的超级勘探后,钻孔胶结质量的资格率达到97%,井层井的井部分占76%。总之,该技术不需要额外的设备,并且只有凭借MPD设备,它可以在高位移效率下实现安全的固井结构和固井质量。

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