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February 8, 2026Canadian Geotechnical Journal0 citations

Field testing and fracturing mechanism of coal seam fracturing driven by high-pressure gas combustion

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XWXiaofei WangSHShaobin HuEWEnyuan Wang

Key Points

  • The study aims to evaluate a high-pressure air fracturing system for enhancing methane recovery in coal seams.
  • Developed a combustion-driven high-pressure air fracturing apparatus.
  • Conducted pressure testing and simulated sample experiments.
  • Performed underground fracturing operations in coal mines with microseismic monitoring.
  • Depressurisation pressure stabilised the wellbore pressure decline rate at about 6% at 40 MPa.
  • Pressure increased from 40.38 to 155.38 MPa, dropping to zero upon release.
  • Field tests indicated an effective radius of 5–10 m for pre-cracking, enhancing gas desorption.

Abstract

A combustion-driven high-pressure air fracturing apparatus was researched and developed to address the challenges of pressurising high-pressure gas. The apparatus underwent pressure testing and simulated sample experiments, subsequently implementing underground fracturing operations in coal mines while concurrently conducting microseismic monitoring. The main results were: (1) As the depressurisation pressure increased, the rate of decline in wellbore pressure was reduced. When the depressurisation pressure reached 40 MPa, the rate of decline stabilised at approximately 6%. (2) The combustion system boosted pressure from an initial 40.38 to 155.38 MPa, subsequently dropping to zero megapascals upon instantaneous release. (3) Field testing indicated an effective radius of 5–10 m for the initial pre-cracking effect and 7–12 m for subsequent operations, both enhancing gas desorption and increasing methane concentration within the reflux channels. (4) A high-pressure air–water coupled coal-rock fracturing model was established, analysing the fluid–solid–thermal coupling mechanism throughout the fracturing process.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/698828100fc35cd7a884742chttps://doi.org/10.1139/cgj-2025-0835
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