西南石油大学学报(自然科学版) ›› 2026, Vol. 48 ›› Issue (4): 145-156.DOI: 10.11885/j.issn.1674-5086.2026.03.12.02

• 油藏型储气库建库技术专刊 • 上一篇    下一篇

堡古2储气库硬脆性泥岩水解劣化与井壁稳定研究

周岩, 宋巍, 吴艳, 王金忠, 胡勇科, 杨燕, 潘俊英   

  1. 中国石油冀东油田分公司, 河北 唐山 063004
  • 收稿日期:2026-03-12 出版日期:2026-07-20 发布日期:2026-07-20
  • 通讯作者: 杨燕,E-mail:jdzc_yangyan@petrochina.com.cn

Research on the Hydrolytic Degradation of Brittle Shale and Wellbore Stability in the Pugu 2 Gas Storage Reservoir

ZHOU Yan, SONG Wei, WU Yan, WANG Jinzhong, HU Yongke, YANG Yan, PAN Junying   

  1. PetroChina Jidong Oilfield Company, Tangshan, Hebei 063004, China
  • Received:2026-03-12 Online:2026-07-20 Published:2026-07-20
  • About author:周岩,1983年生,男,汉族,吉林松原人,高级工程师,主要从事储气库钻井工艺研究工作。E-mail:jdzc_zhouyan@petrochina.com.cn
    宋巍,1985年生,男,汉族,河北唐山人,高级工程师,硕士,主要从事储气库钻井工艺研究工作。E-mail:jd_sw@petrochina.com.cn
    吴艳,1983年生,女,汉族,陕西渭南人,高级工程师,硕士,主要从事储气库钻井工艺研究工作。E-mail:jd_sw@petrochina.com.cn
    王金忠,1982年生,男,汉族,山东沂南人,高级工程师,硕士,主要从事油藏型储气库钻采工程,科研方案及设计等工作。E-mail:jdzc_wangjzh@petrochina.com.cn
    胡勇科,1981年生,男,汉族,河北石家庄人,高级工程师,主要从事储气库钻井管理工作。E-mail:hyk_81@petrochina.com.cn
    杨燕,1981年生,女,汉族,四川内江人,高级工程师,硕士,主要从事储气库固井工艺方面的研究工作。E-mail:jdzc_yangyan@petrochina.com.cn
    潘俊英,1982年生,女,汉族,山东潍坊人,高级工程师,硕士,主要从事储气库钻井设计工作。E-mail:zcy_panjy@petrochina.com.cn

摘要: 针对堡古2储气库东三段硬脆性泥岩钻进过程中井壁失稳频发的难题,基于岩石力学尺度效应理论,开展了完整与破碎泥岩在钻井液浸泡下的力学劣化对比实验,揭示了裂缝-流体耦合损伤机理,并建立了考虑渗流损伤时效性的井壁坍塌预测模型。研究表明: 1)该类泥岩微裂缝发育,裂缝网络将单一水化扩散转变为水化-渗流强耦合损伤; 2)岩体劣化存在明显的尺度效应与非线性时效特征,浸泡初期(0~4 d)破碎岩样的强度衰减速率达到完整岩样的1.54倍; 3)建立了考虑裂缝渗流损伤时效性的井壁坍塌压力预测模型。计算结果显示,9.5 in.井眼的临界坍塌密度在第2天即突破安全警戒线,相较于8.5 in.常规井眼约12 d的稳定期,安全作业窗口期被缩短了80%以上。提出了微米级刚性封堵+成膜剂的协同防塌对策及48 h快速钻完井作业建议,为储气库复杂井段安全钻井提供了理论依据。

关键词: 储气库, 尺度效应, 渗流损伤, 时变失稳, 井壁稳定

Abstract: Frequent wellbore instability poses a significant challenge during the drilling of large-diameter wellbores in the hard and brittle mudstone of the Dong 3 Member in the Pugu 2 Gas Storage Reservoir. Based on the scale effect theory in rock mechanics, this study conducted comparative mechanical degradation experiments on intact and crushed mudstone samples immersed in drilling fluid. A wellbore collapse prediction model considering the time-dependent seepage damage was subsequently established to reveal the fracture-fluid coupling damage mechanism. The results are as follows: 1) The well-developed micro-fracture network in the mudstone transforms singular hydration diffusion into a severe hydration-seepage coupling damage. 2) The rock degradation exhibits a significant scale effect and nonlinear time-dependent characteristics. During the initial immersion phase (0~4 d), the strength decay rate of the crushed samples is 1.54 times that of the intact ones. 3) A wellbore collapse pressure prediction model considering the time effect of fracture seepage damage was established. The calculation results show that, the critical collapse density of the 9.5 in. well position exceeded the safety warning line on the second day, and compared with the 12-day stable period of the 8.5 in. conventional section, the safe operation window was shortened by more than 80%. Based on this, a collaborative anti-collapse strategy of micron-scale rigid plugging and film-forming agents and a 48 h rapid drilling and completion operation suggestion were proposed, providing a theoretical basis for safe drilling in complex sections of gas storage reservoirs.

Key words: gas storage, scale effect, seepage damage, time-dependent instability, wellbore stability

中图分类号: