含水条件下煤结构与声学特性关系研究
Jinzhou Li1, Gang Wang2, Hong Zhang1
1National Engineering Laboratory for Pipeline Safety/MOE Key Laboratory of Petroleum Engineering/Beijing Key Laboratory of Urban Oil and Gas Distribution Technology, China University of Petroleum, Beijing, PR China.
煤的超声P波速度随含水量变化,揭示煤层的润湿情况。较高的孔隙率和分形维数会增加煤对水的敏感性,从而影响波速。
科学分野:
- 地球物理学
- 岩石力学
- 材料科学
背景:
- 注水影响煤层性质。
- 超声P波速度是煤饱和度的关键指标。
- 了解煤结构对波速的影响对于储层监测至关重要。
研究 の 目的:
- 研究不同结构含水煤的超声P波速度。
- 分析含水量和结构特征对波传播的影响。
- 建立P波速度、孔隙率、分形维数和润湿性之间的关系。
主な方法:
- 利用计算机断层扫描技术重建煤的三维模型。
- 在不同湿度条件下测量原煤和煤球砖样品的超声P波速度。
- 分析P波速度、湿度比、孔隙率和分形维数之间的相关性。
主要な成果:
- 孔隙率和分形维数较高的煤样对润湿的敏感性更大,P波速度显著增加。
- 层理对煤球砖有影响,裂缝特征(厚度、大小、倾角)在不同润湿条件下对波速的影响不同。
- 波速增量与孔隙率和分形维数呈正相关。
結論:
- 超声P波速度是评估煤层润湿性的有效方法。
- 煤结构,特别是微孔隙率和曲折度,决定了其对水分饱和的响应。
- 研究结果为利用超声技术对煤层饱和度进行现场评估提供了理论指导。
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