4.5 Article

A New Tree-Type Fracturing Method for Stimulating Coal Seam Gas Reservoirs

期刊

ENERGIES
卷 10, 期 9, 页码 -

出版社

MDPI
DOI: 10.3390/en10091388

关键词

hydraulic fracturing; coal seam; stimulating reservoir volumes (SRV); triaxial testing; gas seepage

资金

  1. National Natural Science Foundation of China (NSFC) [51374258, 51504046]
  2. Program for Changjiang Scholars and Innovative Research Team in the University of China [IRT13043]

向作者/读者索取更多资源

Hydraulic fracturing is used widely to stimulate coalbed methane production in coal mines. However, some factors associated with conventional hydraulic fracturing, such as the simple morphology of the fractures it generates and inhomogeneous stress relief, limit its scope of application in coal mines. These problems mean that gas extraction efficiency is low. Conventional fracturing may leave hidden pockets of gas, which will be safety hazards for subsequent coal mining operations. Based on a new drilling technique applicable to drilling boreholes in coal seams, this paper proposes a tree-type fracturing technique for stimulating reservoir volumes. Tree-type fracturing simulation experiments using a large-scale triaxial testing apparatus were conducted in the laboratory. In contrast to the single hole drilled for conventional hydraulic fracturing, the tree-type sub-boreholes induce radial and tangential fractures that form complex fracture networks. These fracture networks can eliminate the blank area that may host dangerous gas pockets. Gas seepage in tree-type fractures was analyzed, and gas seepage tests after tree-type fracturing showed that permeability was greatly enhanced. The equipment developed for tree-type fracturing was tested in the Fengchun underground coal mine in China. After implementing tree-type fracturing, the gas extraction rate was around 2.3 times greater than that for traditional fracturing, and the extraction rate remained high for a long time during a 30-day test. This shortened the gas drainage time and improved gas extraction efficiency.

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