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Effects of hydration on the microstructure and physical properties of shale

机译:水合对页岩微观结构和物理性质的影响

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The microstructures of shale samples before and after hydration were characterized by field emission scanning electron microscopy (FESEM), and the differences in microstructure and physical parameters of original shale samples, water saturated samples and samples with water centrifugated were examined by micro CT, porosity and permeability tests. The FESEM test shows that the hydration has no effect on the main morphology, position and pores of organic matter (OM). Hydration can increase the number and width of fractures in shale, including generation of new fractures and extension of existent fractures between inorganic minerals and width increase of fractures between banded organic matter and inorganic minerals. Micro CT results of samples with different water saturations show that the intensity of hydration is dominated by primary fracture development, in other words, the more developed the primary fractures of the shale, the stronger the hydration will be. The width of fractures increased two to five times by intense hydration. The porosity of shale is mainly controlled by organic matter content and secondly influenced by the fracture development. The permeability of shale is mainly affected by fracture development and secondly by the porosity. The fracture development influenced both porosity and permeability, but more strongly on permeability than porosity.
机译:用场发射扫描电子显微镜(FESEM)表征水合前后页岩样品的微观结构,并通过显微CT,孔隙度和孔隙率对原始页岩样品,饱和水样品和离心水后样品的微观结构和物理参数进行了比较。渗透性测试。 FESEM测试表明水合对有机物(OM)的主要形态,位置和孔没有影响。水合可增加页岩中裂缝的数量和宽度,包括新裂缝的产生和无机矿物之间现有裂缝的扩展以及带状有机质和无机矿物之间裂缝的宽度增加。不同含水饱和度样品的Micro CT结果表明,水合强度主要由初级裂缝发育决定,换句话说,页岩初级裂缝越发育,水化作用就越强。强烈的水合作用使裂缝的宽度增加了2至5倍。页岩孔隙度主要受有机质含量控制,其次受裂缝发育影响。页岩的渗透率主要受裂缝发展的影响,其次受孔隙度的影响。裂缝的发展既影响孔隙度又影响渗透率,但对渗透率的影响远大于孔隙率。

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