微观孔隙控制不同煤结构的漏行为,基于双尺度数字核心分析
Hanmiao Zhou1,2, Song Li3,4, Ran Xiao5
1School of Energy Resources , China University of Geosciences (Beijing) , 100083, Beijing, China.
Scientific reports
|December 1, 2025
概括
构造变形改变了煤炭的形状.
科学领域:
- 地质地质地质地质地质地
- 石油工程是石油工程中的一个.
- 材料科学 材料科学 材料科学
背景情况:
- 构造变形显著改变了煤的孔裂结构,影响了煤床甲 (CBM) 储库中的流体流动和气体爆发风险.
- 了解这些多层次结构变化对于有效的CBM水库管理至关重要.
研究的目的:
- 研究几何和拓参数对微米和亚微米级煤炭漏行为的影响.
- 为了比较初级煤炭 (PC) 和构造性变形煤炭 (TC) 之间的流动特性.
主要方法:
- 整合微米和亚微米尺度的X射线计算机断层扫描 (CT) 用于详细的结构分析.
- 孔网建模 (PNM) 的应用来模拟漏行为并分析流动动力学.
- 相关性分析以确定依赖于规模的透性控制.
主要成果:
- 初级煤 (PC) 呈现连续,中度连接的断裂和均的亚微米孔,导致平滑,稳定的流动.
- 构造性煤 (TC) 显示了断裂连接性增加,但空间异质性,具有复杂的亚微孔,导致取决于方向的流动和偏好的迁移路径.
- 透性控制从微米级的几何/拓效应转移到亚微米级的连接性/喉大小敏感性.
结论:
- 煤炭的孔隙裂形态因构造变形而改变,决定了多层次的漏行为.
- 规模依赖性分析揭示了原始煤和构造性煤的不同流动模式和透性控制.
- 这些发现对于预测流体迁移和减轻CBM勘探和生产中的气体爆发风险至关重要.
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