小井眼落鱼打捞难点与管柱力学分析: 以新疆准噶尔盆地南缘冲断带TW1井为例
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TE934

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国家自然科学基金重大科研仪器研制项目(52227804);国家自然科学基金联合(U22B2072)


Technical Challenges of Slim-hole Fishing and Workstring Mechanical Behavior Analysis: Well TW1 in the South Margin Thrust Belt of the Junggar Basin, Xinjiang
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    摘要:

    超深小井眼井下作业面临环境复杂、落鱼风险高、工艺窗口窄等挑战,严重制约了安全高效修井工作的实施。针对这一问题,本文以新疆南缘TW1井为研究对象,结合井况参数与落鱼过程,系统分析了落鱼原因,识别了小井眼落鱼打捞的关键技术难点。在此基础上,优选了适应小井眼条件的打捞工具与工艺流程,开展了打捞效果评估并提出改进建议。进一步以TW1井钻磨灰塞作业为实例,基于现场测量数据,构建管柱力学分析程序,对套管段与裸眼段的摩阻系数进行了反演计算,并完成了管柱力学计算和扭矩传递过程模拟及敏感性分析。结果表明:所有带有腔室结构的液压打捞工具均存在变形失效风险,井下落鱼状态的准确识别是保障打捞成功的关键因素;套管段摩阻系数为0.15,裸眼段为0.55;井段 6509.73–8012?m 为易屈曲段,轴向力随钻压增加而显著下降,随泥浆密度增加略有减小;井口扭矩随井深增加而升高,井底可达扭矩仅为 0.12?kN·m,呈明显阶梯式衰减。建议适当降低钻压与泥浆密度,以提高井底有效扭矩。研究成果可为超深小井眼复杂工况下的打捞工艺优化与力学安全性设计提供理论支持与工程参考。

    Abstract:

    Ultra-deep slim-hole downhole operations are confronted with significant challenges due to the complex wellbore environment, the high likelihood of fish falling, and the limited operational window, which severely restrict the safe and efficient execution of workover operations. To address these issues, Well TW1 on the southern margin of Xinjiang was selected as a representative case. By analyzing the well conditions and the fish-dropping process, the primary causes of fish loss were identified, and the key technical difficulties associated with slim-hole fishing were clarified. Fishing tools and operational procedures suitable for slim-hole constraints were optimized, and the fishing performance was evaluated with corresponding improvement suggestions proposed. Furthermore, based on the milling operation in Well TW1, a string mechanics analysis program was established using field-measured data. The friction coefficients of the cased hole and open hole were back-calculated, and a comprehensive mechanical strength evaluation, torque-transmission modeling, and sensitivity analysis were conducted. The results indicate that all hydraulic fishing tools with internal chambers are susceptible to deformation failure, and accurate identification of fish status is essential for fishing success. The friction coefficients were determined to be 0.15 in the cased section and 0.55 in the open-hole section. The well interval from 6509.73 m to 8012 m is prone to buckling. Axial force decreases markedly with increasing weight on bit and slightly with increasing mud density. Although surface torque increases with depth, the effective torque at the bottom is only 0.12 kN·m, showing distinct stepwise attenuation. It is therefore recommended that weight on bit and mud density be moderately reduced to improve bottomhole torque transmission. This study provides theoretical guidance and engineering references for optimizing fishing technology and ensuring mechanical safety under complex ultra-deep slim-hole conditions.

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相志鹏,王万彬,王飞文,等. 小井眼落鱼打捞难点与管柱力学分析: 以新疆准噶尔盆地南缘冲断带TW1井为例[J]. 科学技术与工程, 2026, 26(20): 8633-8641.
Xiang Zhipeng, Wang Wanbin, Wang Feiwen, et al. Technical Challenges of Slim-hole Fishing and Workstring Mechanical Behavior Analysis: Well TW1 in the South Margin Thrust Belt of the Junggar Basin, Xinjiang[J]. Science Technology and Engineering,2026,26(20):8633-8641.

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  • 收稿日期:2025-08-19
  • 最后修改日期:2026-04-20
  • 录用日期:2025-12-16
  • 在线发布日期: 2026-07-27
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