关于煤炭在高压空气喷射下孔状结构演变和微观透特征的研究
Shaoyang Yan1,2, Fuqiang Gao3,4, Xiaolin Yang5
1School of Intelligent Construction and Civil Engineering, Luoyang Institute of Science and Technology, Luoyang, 471023, China. yanshaoyang1994@126.com.
Scientific reports
|August 14, 2025
概括
高压空气喷射 (HPAB) 通过改善孔隙结构和连接性来增强煤床甲的提取. 这项技术显著增加了低透性煤层中的气体泄漏和迁移率.
科学领域:
- 地球科学 地球科学 地球科学
- 地质地质地质地质地质地质
- 石油工程是石油工程中的一个.
背景情况:
- 煤床甲 (CBM) 的发生和迁移受到煤层孔隙结构的严重影响.
- 高压空气喷射 (HPAB) 是增强非传统气体提取的关键技术.
- 了解HPAB对煤炭3D孔网和CBM透机制的影响是有限的.
研究的目的:
- 调查HPAB的煤炭中孔隙结构和透特征的演变.
- 在HPAB条件下可视化3D孔网和连接.
- 阐明CBM透和HPAB后扩散的微观机制.
主要方法:
- 使用专用设备进行HPAB测试.
- 使用CT扫描和Avizo软件创建了煤炭的微观可视化模型.
- 血管轴骨架算法被用来提取孔隙和裂连接通道,用于3D可视化.
主要成果:
- 由HPAB引起的裂沿主要应力方向传播,受天然煤缺陷的影响.
- 孔隙和裂连接通道的曲率在HPAB后降低了高达26.72%.
- HPAB创建了一个开发的3D断裂网络,CBM流速增加了112.90倍,速度增加了5.24倍.
结论:
- HPAB显著改变了煤孔结构,形成了一个更连接的3D断裂网络.
- 增强的连接性大大提高了CBM透和迁移效率.
- 这项研究为使用HPAB在低透性煤层中改进CBM开采提供了基础.
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