油气藏评价与开发 ›› 2021, Vol. 11 ›› Issue (1): 81-85.doi: 10.13809/j.cnki.cn32-1825/te.2021.01.011

• 页岩气开发 • 上一篇    下一篇

威远页岩气水平井控缝防窜技术优化与应用

曾凌翔()   

  1. 中国石油川庆钻探工程有限公司井下作业公司,四川 成都 610051
  • 收稿日期:2020-04-14 出版日期:2021-02-26 发布日期:2021-02-04
  • 作者简介:曾凌翔(1985-),男,硕士,工程师,从事增产改造工作。地址:四川省成都市成华区万基中心井下作业公司,邮政编码:610051。E-mail:zenglingxiang94@126.com
  • 基金资助:
    “十三五”国家科技重大专项“长宁—威远页岩气开发示范工程”(2016ZX05062);中国石油天然气集团公司中油油服统筹科技项目“川渝页岩气综合提速提效压缩工期综合配套技术研究—页岩气压裂施工参数优化提速研究”(2019T-003-002-3);川庆科技项目“威远页岩气重复压裂技术研究”(CQ2019B-24-4-4);井下作业公司科技项目“页岩气加砂压裂施工预警技术及配套软件研究”(JX2019-4)

Optimization and application of fracture control and channeling prevention technology in Weiyuan shale gas horizontal well

Zeng Lingxiang()   

  1. Downhole Services Company, CNPC Chuanqing Drilling Engineering Company Limited, Chengdu, Sichuan 610051
  • Received:2020-04-14 Online:2021-02-26 Published:2021-02-04

摘要:

由于大型天然裂缝、水力裂缝延伸单一等原因,多平台压裂时容易发生井间窜扰现象,邻井瞬时产气量最高降低93 %,井口压力最高上涨12 MPa,严重影响页岩气压裂开发效果。针对该类复杂情况,提出了一种页岩气水平井控缝防窜技术,主要包含多裂缝控缝长技术与转向控缝长技术。通过增加水力裂缝条数,降低净压力,或者利用暂堵材料控制水力裂缝远端延伸转向等措施,控制水力裂缝延伸,增加裂缝复杂程度,避免与邻井发生窜扰现象,最终实现井控泄气区域内有效开发页岩气。数值模拟表明,运用该技术有效缝长缩短了11.9 % ~ 24.8 %,且现场应用效果明显,微地震实时监测缝长同比降低24 %,邻井压力实时监测压力未上涨。页岩气水平井控缝防窜技术不仅为现场施工提供了理论支撑,同时降低了复杂情况发生概率,提高了单井产量。

关键词: 页岩气, 水平井, 控缝, 转向, 窜扰, 应用

Abstract:

Due to the large natural fractures and the single extension of hydraulic fractures, gas channeling occurs easily during fracturing of multi-platform, as a result the instantaneous gas production of adjacent wells is reduced by at most 93 %, and the wellhead pressure is increased by at most 12 MPa, which seriously affects the fracturing development effect of shale gas. For this complex situation, a fracture control and channeling prevention technology for horizontal wells of shale gas is proposed, which mainly includes fracture-length control of multiple fracture and steering fracture. By the measures of increasing the number of hydraulic fractures to reduce the net pressure, or using temporary plugging materials to steer hydraulic fractures, the extension direction of hydraulic fractures has been controlled and the fracture complexity has been increased to reduce the interacting of adjacent wells, and finally make the shale gas effectively develops in the well controlled gas drainage area. The numerical simulation shows that after applying this technology, the effective fracture length is shortened by 11.9 %~24.8 % The field application effect is obvious, the fracture length monitored by real-time micro seismic is reduced by 24 %, and the real-time monitoring pressure of adjacent wells does not change. The fracture control and channeling prevention technology in horizontal wells of shale gas does not only provides theoretical support for field application, but also reduces the probability of complex situations and improves the production of single well.

Key words: shale gas, horizontal well, fracture control, steering, interference, application

中图分类号: 

  • TE25637