煤炭工程 ›› 2026, Vol. 58 ›› Issue (2): 85-92.doi: 10.11799/ce202602011

• 生产技术 • 上一篇    下一篇

基于地面微震监测的厚硬顶板水力压裂裂缝扩展效果研究 #br#

姚子涛,陆 闯,王宾昌,杨光宇,张晨阳   

  1. 1. 中煤陕西能源化工集团有限公司,陕西 榆林 719000

    2. 天地科技股份有限公司 开采设计事业部,北京 100013

    3. 中煤科工开采研究院有限公司,北京 100013

    4. 矿山顶板灾害防控国家矿山安全监察局重点实验室,北京 100013

    5. 中煤陕西榆林能源化工有限公司,陕西 榆林 719000

  • 收稿日期:2025-06-23 修回日期:2025-07-25 出版日期:2026-02-15 发布日期:2026-03-16
  • 通讯作者: 陆闯 E-mail:mkyss123@126.com

Research on fracture propagation effectiveness in hydraulic fracturing of thick-hard roof strata using surface microseismic monitoring #br#

  • Received:2025-06-23 Revised:2025-07-25 Online:2026-02-15 Published:2026-03-16

摘要:

水力压裂厚硬顶板的裂缝扩展效果,是评估该技术防冲性能的关键所在。以20101工作面厚硬岩层顶板水力压裂工程作为背景,运用地面微震监测技术以及最小体积覆盖椭圆球法,针对水力压裂过程中裂缝的扩展规律展开研究。结果表明:在总压裂长度为1000m的范围内,总共监测到1255个微震事件;裂缝扩展范围与压裂液用量呈正相关,与压裂施工时间并无关联,且随着微震事件增加,厚硬岩层裂缝扩展范围增大;②以水平井为中心,水力压裂裂缝水平南北方向平均半径、水平东西方向平均宽度和垂直方向平均半径分别为1277131m,水力压裂后厚硬岩层裂缝扩展体积(SRV)为371.2×104m3;③井下疏水孔钻场出水情况与地面微震监测裂缝扩展结果较为相符。研究结果表明地面微震监测技术能够用于水力压裂裂缝扩展效果的评估,可为该类条件下顶板水力压裂的裂缝评估以及防冲效果分析提供科学依据。

关键词: 水力压裂, 微震监测, 裂缝扩展, 厚硬顶板, 冲击地压

Abstract:

The fracture propagation effect in thick-hard roof strata during hydraulic fracturing is critically significant for evaluating the technology's effectiveness in preventing rock bursts. Using the hydraulic fracturing operation in the thick-hard roof strata of the 20101 working face as an engineering case study, this research investigated the fracture propagation effect through surface microseismic monitoring and the small-volume covering ellipsoid method. The results demonstrate that: ①A total fracture length of 1,000 m was achieved, with 1,255 microseismic events monitored during hydraulic fracturing. The fracture propagation range exhibited a positive correlation with fracturing fluid consumption but showed no correlation with operation duration. As microseismic events increased, the fracture propagation range in thick-hard rock strata expanded;② Centered on the horizontal well, hydraulic fractures demonstrated average radii of 127 m (north-south direction) and 31 m (vertical direction), with an average width of 71 m (east-west direction). The stimulated reservoir volume (SRV) in thick-hard rock strata reached 371.2×104m3 post-fracturing;③ Water discharge conditions at underground drainage borehole drilling sites showed good agreement with fracture propagation results detected via surface microseismic monitoring.These findings confirm that surface microseismic monitoring technology can effectively study fracture propagation effects, providing a scientific basis for evaluating both fracture propagation outcomes and rock burst prevention effectiveness in thick-hard roof strata hydraulic fracturing.

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