水力压裂和井距对煤层瓦斯抽放的影响

Q3 Engineering
Huayong Lv
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引用次数: 1

摘要

水力压裂是一种改善煤层透气性和瓦斯抽放性的技术。本文采用理论分析和现场试验相结合的方法,研究了煤层水力压裂的机理,包括钻孔和裂缝的起裂条件、主要裂缝形态、扩展和延伸过程。利用RFPA2D-flow软件对煤体双孔水力压裂从裂缝萌生到扩展延伸过程进行数值模拟。通过数值模拟,揭示了井眼周围应力、水压和声发射的特征及其演化,估算了不同井眼间距条件下压裂孔的渗透率改善幅度。现场工业试验结果表明,日抽采纯流量增加5.8 ~ 17.6倍,平均抽采速度达到3.76 m3/min(最大10 m3/min),工作面抽采速率达到57.32%,单孔水力压裂影响半径约为5 m。研究表明,水力压裂增透技术可大大提高煤层钻孔瓦斯抽放速率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of hydraulic fracturing and borehole spacing on gas drainage along a coal seam
Hydraulic fracturing is a technology employed to improve coal seam permeability and gas drainage. This study uses theoretical analysis and field testing to examine the mechanisms of hydraulic fracturing of a coal seam, including the initiation conditions of boreholes and cracks, main crack forms, and expansion and extension processes. RFPA2D-flow software was used to develop a numerical simulation of double-hole hydraulic fracturing, from crack initiation to expansion and extension in the coal body. The numerical simulation revealed characteristics and evolution of the stresses, water pressure and acoustic emission around the boreholes and estimated the permeability improvement range of fracturing holes under conditions of different hole spacing. Results of a field industrial test showed that the daily gas drainage pure flows increased by 5.8-17.6 times, the average gas drainage velocity reached 3.76 m3/min (maximum 10 m3/min), the gas drainage rate of the working face reached 57.32%, and the influence radius of single-hole hydraulic fracturing is approximately 5 m. This study demonstrates that hydraulic fracturing and permeability improvement technology can greatly improve the gas drainage rate of boreholes in a coal seam.
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来源期刊
International Journal of Mining and Mineral Engineering
International Journal of Mining and Mineral Engineering Engineering-Industrial and Manufacturing Engineering
CiteScore
1.90
自引率
0.00%
发文量
1
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