中国安全科学学报 ›› 2023, Vol. 33 ›› Issue (10): 137-146.doi: 10.16265/j.cnki.issn1003-3033.2023.10.1147

• 安全工程技术 • 上一篇    下一篇

高温-动态冲击作用下页岩微纳米孔隙结构演化特征

余旭1,2(), 王宇1,2, 翟成1,2, 刘厅1,2, 徐吉钊1,2, 孙勇3   

  1. 1 中国矿业大学 安全工程学院,江苏 徐州 221116
    2 中国矿业大学 煤矿瓦斯治理国家工程研究中心,江苏 徐州 221116
    3 中国矿业大学 低碳能源与动力工程学院,江苏 徐州 221116
  • 收稿日期:2023-04-15 修回日期:2023-07-18 出版日期:2023-10-28
  • 作者简介:

    余旭 (1991—),男,安徽宿州人,博士,副教授,硕士生导师,主要从事非常规天然气开发等方面的研究。E-mail:

    翟成 教授

    刘厅 副教授

    徐吉钊 副教授

    孙勇 讲师

  • 基金资助:
    国家重点研发计划项目(2020YFA0711800); 国家自然科学基金青年科学基金资助(52104233); 中央高校基本科研业务费专项资金资助(2023KYJD1007)

Evolutionary characteristics of shale micronano pore structures under high temperature-dynamic impact

YU Xu1,2(), WANG Yu1,2, ZHAI Cheng1,2, LIU Ting1,2, XU Jizhao1,2, SUN Yong3   

  1. 1 School of Safety Engineering, China University of Mining and Technology, Xuzhou Jiangsu 221116, China
    2 National Engineering Research Center for Coal Gas Control, China University of Mining and Technology,Xuzhou Jiangsu 221116, China
    3 School of Low-Carbon Energy and Power Engineering,Xuzhou Jiangsu 221116, China
  • Received:2023-04-15 Revised:2023-07-18 Published:2023-10-28

摘要:

为阐明甲烷原位燃爆压裂载荷对页岩储层的微观改性特征,开展高温-动载协同作用下页岩微纳米孔隙结构的演化特征研究,选取典型页岩样品,综合应用3D轮廓测量、原子力显微镜(AFM)、扫描电镜(SEM)和X射线衍射(XRD),分析高温-动态冲击作用后的页岩碎块的宏微观粗糙特性、孔裂隙结构及矿物组分随高温的变化特征。结果表明:随温度升高,页岩断面毫米级粗糙度先略有降低后急剧升高。随温度升高,页岩有机质纳米孔减少,石英中出现复杂裂缝,碳酸盐矿物产生气孔,黏土矿物层间结构破坏,页岩体孔隙度由常温的1.488%逐渐上升至700 ℃的1.997%。不同高温下页岩物性组成差异显著,XRD定量分析结果显示,石英的质量占比升高,方解石和白云石总占比降低,从微纳米尺度说明燃爆载荷对页岩储层有改性效果。

关键词: 高温热效应, 动态冲击, 页岩, 微纳米, 孔隙结构, 演化特征, 燃爆压裂, 粗糙度

Abstract:

To elucidate the micro-scale modification mechanisms of shale reservoirs by methane in-situ explosive fracturing, the evolution characteristics of micro scale and nano scale pore structures in shale were investigated under synergistic effects of high temperature and dynamic impact. This study selected typical shale samples and comprehensively applied 3D contour measurement, atomic force microscopy (AFM), scanning electron microscopy (SEM) and X-ray diffraction (XRD) to study the macro-micro roughness characteristics, pore and crack structures and mineral composition changes with temperature of shale fragments after high temperature and dynamic impact. The results show that with the increase of temperature, the millimeter-scale roughness of shale section first decreases slightly and then rises sharply. The organic matter nano-pores in shale decrease, complex cracks appear in quartz, gas pores are produced in carbonate minerals, interlayer structures of clay minerals are destroyed, and the porosity of shale body gradually increases from 1.488% at room temperature to 1.997% at 700 ℃. The mineral composition of shale is significantly different at different high temperatures. XRD quantitative analysis shows that the mass ratio of quartz increases while that of dolomite and calcite decreases. This study proves that high-temperature combustion has a modification effect on shale roughness and pore-crack from the micro-nano scale.

Key words: high-temperature effect, dynamic impact, shale, micro-nano scale, pore structure, evolutionary characteristics, explosion fracturing, roughness