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煤岩压裂裂缝形态-压力响应实验研究及应用

郭布民 袁征 闵烨

煤矿安全2017,Vol.48Issue(10):9-12,4.
煤矿安全2017,Vol.48Issue(10):9-12,4.DOI:10.13347/j.cnki.mkaq.2017.10.003

煤岩压裂裂缝形态-压力响应实验研究及应用

Experimental Research on Fracture Morphology-pressure Response of Coal Rock Fracturing and Application

郭布民 1袁征 1闵烨2

作者信息

  • 1. 中海油田服务有限公司油田生产研究院,天津300459
  • 2. 天津市海王星海上工程技术股份有限公司,天津300384
  • 折叠

摘要

Abstract

A large number of construction data show that construction pressure is often higher than the predicted pressure in coal rock fracturing,and most wells have no obvious fracture pressure.Proceeding from physical model experiments and comparison between experimental data and construction data,we explain the phenomenon.Construction pressure is result of fracture propagation in ground,which is close to fracture morphology.In this paper,the influence factors of fracture morphology were investigated and the experimental method was applied to fracture various types of cracks artificially.Results of crack initiation show that:fracture morphologies mainly include single fractures,parallel multi-fracture,intersecting multi-fracture,and the pressure curves of different fracture morphologies were different.Single fracture has obvious fracturing pressure,and the extension pressure is close to the minimum horizontal principal stress.The pressure curve of parallel multi-fracture is smooth,without obvious fracture pressure.Intersecting multi-fracture has multi-fracturing pressure.Propagation pressure of multi-fracture is higher than that of single fracture.According to the field construction pressure and the experimental conclusion,the fracture morphology of the two wells in south Shizhuangnan Mine is analyzed and the measures are taken to achieve better results.

关键词

煤岩压裂/裂缝形态/多裂缝/压力曲线形态/煤层气井

Key words

fracturing of coal rock/fracture morphology/multiple fracture/pressure curve morphology/coalbed methane well

分类

矿业与冶金

引用本文复制引用

郭布民,袁征,闵烨..煤岩压裂裂缝形态-压力响应实验研究及应用[J].煤矿安全,2017,48(10):9-12,4.

基金项目

中海油田服务股份有限公司科研基金重点资助项目(YSB12YF008) (YSB12YF008)

煤矿安全

OA北大核心CSTPCD

1003-496X

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