Modeling and coupling analysis of enhanced coalbed methane recovery by gas injection

Author:

Zhang Junxiang12ORCID,Jiang Yanling1,Li Bo2,Guo Junjie3,Lu Weiyong4,Qu Lina1

Affiliation:

1. School of Energy & Environment Engineering Zhongyuan University of Technology Zhengzhou Henan China

2. School of Safety Science and Engineering Henan Polytechnic University Jiaozuo Henan China

3. School of Resources and Safety Engineering Henan University of Engineering Zhengzhou Henan China

4. Department of Mining Engineering Luliang University Luliang Shanxi China

Abstract

AbstractEnhanced coalbed methane (ECBM) recovery by gas injection is regarded as a feasible method for ECBM recovery. To investigate the mechanism of CH4 displacement by N2 injection, a series of physical experiments were conducted in the laboratory under different N2 injection pressures. The experimental results showed a continuous increase in the N2 volume fraction and a decrease in the CH4 volume fraction with the N2 injection pressure. The CH4 displacement efficiency increases rapidly in the initial stage and then gradually stabilizes. Given the effect of matrix shrinkage and effective stress on coal permeability, a dynamic multi‐field coupling model of ECBM recovery by N2 injection (N2‐ECBM) was proposed in this work. Then, numerical simulations were implemented by the coupling model to analyze the key factors affecting coal permeability, N2 injection pressure and CH4 pressure during the N2–ECBM process. Furthermore, the Response Surface Methodology (RSM) was used to investigate the interactions of multiple factors, the results reveal that an increase in one factor would weaken the influence of another factor. In addition, a RSM regression model was obtained and verified by the experimental data, with a well‐fitting outcomes. Therefore, the RSM model can be used in practical engineering applications to optimize specific extraction parameters for ECBM recovery at minimum cost in a limited extraction period.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Reference48 articles.

1. Status and prospect of reservoir stimulation technologies for CBM surface well production in China;Yang C‐X;Nat Gas Ind,2022

2. Current Status and Effective Suggestions for Efficient Exploitation of Coalbed Methane in China: A Review

3. Current situation and development trend of coalbed methane development and utilization technology in coal mine area;Liu J‐Z;J China Coal Soc,2020

4. Research status and prospect of gas occurrence mechanism in deep coal seam;Qin Y‐J;Saf Coal Min,2020

5. Seepage characteristic and mechanism during liquid CO2 displacing CH4 in coal seam;Li Z‐B;J Min Saf Eng,2022

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