裂缝型漏失地层钻井液防漏堵漏数值模拟研究
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1.河南省第四地质勘查院有限公司,河南 郑州 450001;2.河南省小口径钻探工程技术研究中心,河南 郑州 450001;3.中国地质大学(武汉)工程学院,湖北 武汉 430074

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P634.6

基金项目:

国家自然科学基金“纳米颗粒钻井液离散元流固耦合模拟与页岩孔隙封堵机理研究”(编号:42002311)


Numerical simulation study on leakage prevention and sealing of fractured formation drilling fluids
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1.The Fourth Geological Exploration Institute of Henan Province Co., Ltd, Zhengzhou Henan 450001, China;2.Henan Provincial Engineering and Technology Research Centre for Small Diameter Drilling, Zhengzhou Henan 450001, China;3.Faculty of Engineering, China University of Geosciences, Wuhan Hubei 430074, China

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    摘要:

    钻井液防漏堵漏是保障钻井安全、保护储层、减少经济损失、提高钻井效率和助力环境保护的关键技术措施。由于现场实际观测和实验条件限制,漏失地层的堵漏机理难以探究。为更好地解释裂缝型漏失地层的颗粒堵漏机理,本研究使用COMSOL Multiphysics建立了裂缝型地层的封堵模型,并分析了颗粒浓度、颗粒粒径及颗粒级配对裂缝型漏失地层封堵效率的影响,从而揭示其颗粒封堵的具体机理。结果表明:(1)封堵效率与颗粒尺寸呈正相关。在相同浓度下,颗粒粒径越大,封堵形成时间越短。(2)颗粒浓度存在一个有效封堵范围,颗粒浓度过低时无法形成有效封堵,而颗粒浓度过高时封堵效率趋于饱和。(3)颗粒级配可协同提升封堵效率和封堵致密性。大尺寸颗粒浓度相同,小尺寸颗粒浓度质量分数增加1%时,最终漏速降低了35%;小尺寸颗粒浓度相同,大尺寸颗粒浓度质量分数增加4%时,裂缝桥堵形成时间减少了50%。堵漏颗粒中小颗粒主要影响封堵层的致密性,大颗粒主要影响封堵效率。

    Abstract:

    Leakage prevention and plugging of drilling fluid is a key technical measure to ensure drilling safety, protect reservoirs, reduce economic losses, improve drilling efficiency and environmental protection. Due to the limitations of actual observation and experimental conditions in the field, it is difficult to explore the plugging mechanism of leaky formations. In order to better explain the particle plugging mechanism of fractured leaky formations, this study used COMSOL Multiphysics to establish a plugging model for fractured formations, and analysed the effects of particle concentration, particle size and particle gradation on the plugging efficiency of fractured leaky formations, so as to reveal the specific mechanism of particle plugging. The results show that: (1) The plugging efficiency is positively correlated with the particle size. The larger the particle size, the shorter the plugging time under the same concentration. (2) There is an effective blocking range for particle concentration, and effective blocking cannot be formed when the particle concentration is lower than the lower limit of the range, while the increase in concentration has little effect on the blocking efficiency when the particle concentration is higher than the upper limit of the range. (3) The particle gradation can synergistically improve the blocking efficiency and blocking densification. When the concentration of large-sized particles is the same and the mass fraction of small-sized particles concentration is increased by 1%, the final leakage velocity is reduced by 35%; When the concentration of small-sized particles is the same and the mass fraction of large-sized particles concentration is increased by 4%, the formation time of crack bridge plugging is reduced by 50%. The small particles in the plugging particles mainly affect the densification of the plugging layer, while the large particles mainly affect the plugging efficiency.

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引用本文

孔二伟,王利锋,韩子辰,等.裂缝型漏失地层钻井液防漏堵漏数值模拟研究[J].钻探工程,2025,52(4):46-53.
KONG Erwei, WANG Lifeng, HAN Zichen, et al. Numerical simulation study on leakage prevention and sealing of fractured formation drilling fluids[J]. Drilling Engineering, 2025,52(4):46-53.

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  • 收稿日期:2024-10-28
  • 最后修改日期:2025-02-18
  • 录用日期:2025-02-25
  • 在线发布日期: 2025-07-04
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