• 论文
主办单位:煤炭科学研究总院有限公司、中国煤炭学会学术期刊工作委员会
低渗煤层CO2气相压裂裂隙圈形态研究
  • Title

    Study on cracking ring form of carbon dioxide gas phase fracturing in low permeability coal seam

  • 作者

    曹运兴田林范延昌刘建中张帅

  • Author

    CAO Yunxing ,TIAN Lin ,FAN Yanchang ,LIU Jianzhong ,ZHANG Shuai

  • 单位

    河南理工大学煤层气/瓦斯地质工程研究中心河南理工大学中原经济区煤层(页岩)气河南省协同创新中心河南方舟新能源股份有限公司北京科若思技术股份有限公司山西潞安集团高河能源公司

  • Organization
    1. Research Center of Coalbed Methane/Gas Geology and Engineering,Henan Polytechnic University,Jiaozuo ,China; 2. Henan
    Provincial Collaborative Innovation Center of Coalbed Methane and Shale Gas for Central Plains Economic Region,Henan Polytechnic University,
    Jiaozuo ,China; 3. Henan Arks New Energy Company Limited,Jiaozuo ,China; 4. Beijing Traverse Technology and
    Development Company Limited,Beijing ,China; 5. Gaohe Energy Company,Lu’an Group,Zhangzi ,China
  • 摘要

    为了揭示低渗煤层气相压裂裂隙圈形态,采用球形震源理论建立了地震应力降和裂隙圈形态关系,并对山西高河能源公司山西组3号煤层气相压裂作业过程进行了监测研究。结果表明:微地震监测作为一种地球物理手段可以有效揭示气相压裂裂隙卸压圈形态;气相压裂裂隙卸压圈形态显示为不规则的椭球型,椭球的长轴和钻孔压裂段长度相当,短轴长度为8~20 m;气相压裂裂隙扩展的不规则性主要受控于高压气体破岩的不同步,煤(岩)的各向异性及脆性指数也对裂隙扩展形态有影响。

  • Abstract
    In order to reveal the crack pressure released ring form of the gas phase fracturing,a spherical seismic source theory was applied to establish a relationship between the seismic stress drop and the cracking ring shape. A supervision study was conducted on the gas phase fracturing operation process of No. 3 seam in Shanxi Formation of Shanxi Gaohe Energy Company. The results showed that the supervision of the microseismic as a geophysics means could effectively reveal the crack pressure released ring shape of the gas phase fracturing. The crack pressure released ring shape of the gas phase fracturing was an irregular spheroid. The long axis of the spheroid was equivalent to the sectional fracturing length of the borehole and the short axis length was 8 ~ 20 m. The cracking expansion irregularity of the gas phase frac- turing mainly was controlled by the asynchrony of the high pressure gas fracturing. The anisotropy and brittleness index of the coal ( rock) also would affect to the crack expansion shape.
  • 关键词

    瓦斯治理气相压裂微地震球形震源理论裂隙圈形态

  • KeyWords

    gas control; gas phase fracturing; microseismic; spherical seismic source theory; cracking ring shape

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