沉积物中天然气水合物微观分布模式及其电阻率响应特征

Microscopic distribution patterns of natural gas hydrates in sediments and the resistivity response

  • 摘要: 电阻率在水合物储层物性研究方面具有重要作用。本文从微观与宏观测试相结合的角度,开展海洋沉积物中水合物生成过程X-CT扫描和电阻率同步测量实验。通过实验过程中扫描的X-CT图像和测量的电阻率数据,分析了水合物生成过程中水合物微观分布、孔隙水变化和电阻率响应特征,探究了水合物对孔隙水演化和电阻率的影响规律。结果表明,水合物微观分布形态是电阻率变化的直接表现形式,其本质机制在于该分布改变了孔隙水的空间连通性,重构了导电路径。低饱和度时,悬浮模式分布为主的水合物对孔隙水连通性影响不明显,电阻率变化较小;随着悬浮型水合物的生长,原有较大的孔隙水空间分割成多个较小的孔隙水空间,孔隙水网络变复杂,电流传导路径变曲折,电阻率增大。当水合物与沉积物骨架接触,连通的孔隙水被完全截断,电流传导路径更加曲折,电阻率明显增大。相同沉积体系中,胶结模式下的电阻率高于悬浮模式和接触模式下的电阻率。水合物饱和度与电阻率之间的定量关系受水合物微观分布的影响,不同水合物分布模式下水合物饱和度与电阻率之间的正相关性随着饱和度的增加逐渐增强。

     

    Abstract: Resistivity is an important property of hydrate reservoirs for research. We conducted X-CT scanning and resistivity synchronous measurement experiments on hydrate formation process in marine sediments in combination of microscopic and macroscopic tests. Through the X-CT images scanned during the experiment and the measured resistivity data, the microscopic distribution of hydrates, changes in pore water, and resistivity response during hydrate formation were analyzed, and the impact factors on hydrates on pore water evolution and resistivity were explored. Results show that the distribution of microscopic morphology of hydrates is the direct manifestation of resistivity changes. The mechanism is that the distribution alters the spatial connectivity of pore water and reconstructs the conductive path. At low saturation levels, the hydrate distribution dominated by the suspension mode has no obvious effect on the connectivity of pore water and the resistivity change is small. As the suspension-type hydrates grow, the original large pore water spaces are divided into multiple smaller pore water spaces, the pore water network becomes more complex, and the electrical conductivity path becomes more tortuous, which consequently increases the resistivity. When hydrates meet sediment skeleton, the pore water connection is completely cut off, the electrical conductivity path becomes more tortuous, and thus the resistivity increases significantly. In the same sedimentary system, the resistivity under the cementation mode is higher than that under the suspension mode and the contact mode. The quantitative relationship between hydrate saturation and resistivity is positive and affected by the microscopic distribution of hydrates, and the correlation is positively related in different hydrate distribution modes with increase in the saturation.

     

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