伊明,戴勇,杨焕强,等. 负压力窗口控压下套管井筒压力控制技术[J]. 石油钻探技术,2024, 52(1):17-25. DOI: 10.11911/syztjs.2023106
引用本文: 伊明,戴勇,杨焕强,等. 负压力窗口控压下套管井筒压力控制技术[J]. 石油钻探技术,2024, 52(1):17-25. DOI: 10.11911/syztjs.2023106
YI Ming, DAI Yong, YANG Huanqiang, et al. Wellbore pressure control technologies while running managed pressure casing with negative pressure window [J]. Petroleum Drilling Techniques,2024, 52(1):17-25. DOI: 10.11911/syztjs.2023106
Citation: YI Ming, DAI Yong, YANG Huanqiang, et al. Wellbore pressure control technologies while running managed pressure casing with negative pressure window [J]. Petroleum Drilling Techniques,2024, 52(1):17-25. DOI: 10.11911/syztjs.2023106

负压力窗口控压下套管井筒压力控制技术

Wellbore Pressure Control Technologies while Running Managed Pressure Casing with Negative Pressure Window

  • 摘要: 负压力窗口油气井下套管时井筒内压力难以控制,容易引发溢流或漏失等复杂事故的问题。为此,以井筒内多密度梯度钻井液为基础,基于瞬态波动压力理论,建立了控压下套管过程中井筒内液柱结构及井筒压力计算模型;以中国石油重点探井乐探1井为例,模拟计算了下套管及钻井液循环过程中液柱结构的变化情况,给出了下套管过程中的钻井液循环方案,推荐了不同阶段的套管下入速度及井口控压值。结果表明:1)优化后的多密度梯度钻井液可实现负压力窗口地层起钻后的防漏压稳;2)套管下入不同深度时,通过循环不同密度的钻井液,可以实现钻井液循环过程中的防漏压稳;3)通过分段控制套管下入速度及环空回压,可以实现下套管过程中的防漏压稳。研究结果为负压力窗口地层控压下套管提供了理论依据。

     

    Abstract: It is difficult to control the wellbore pressure while running casing in oil and gas wells with negative pressure windows, which are inclined to cause complex accidents such as overflow or leakage. The calculation models of the slurry column structure and wellbore pressure during managed pressure casing running were established on the basis of multi-density gradient drilling fluids in wells and the theory of transient fluctuating pressure. With the key exploration well Letan-1 of CNPC as an example, the variation of the slurry column structure in the process of running casing and drilling fluid circulation was simulated and calculated. In addition, the corresponding drilling fluid circulation scheme in the casing running process was provided, and the rate of running casing and the managed pressure value of the well head at different stages were recommended. The results demonstrate that 1) the leakage prevention and pressure stability in the wellbore with the negative pressure window are achieved after drilling through the optimized multi-density gradient drilling fluid; 2) the leakage prevention and pressure stability during the circulation of the drilling fluid are accomplished by circulating the drilling fluid with various densities at different depths when running casing; 3) the leakage prevention and pressure stability in the process of running casing are reached by controlling the rate of casing running and the annular back pressure at different stages. The research results provide a basis for pressure control technologies while running casing with negative pressure windows.

     

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