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The influence of water saturation and confining pressure to gas porosity and permeability of sandstone

机译:含水饱和度和围压对砂岩气孔率和渗透率的影响

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Understanding of gas porosity and permeability is important in gas storage, recovery and nuclear waste disposal. In this paper, we focus on the gas porosity and permeability variation of sandstone at different water saturation in loading-unloading cycle. Through an improved method, we prepared the samples with water saturation level from 0 to 81%. The test results suggest that gas effective permeability and porosity are sensitive to confining pressure. This is particularly true in low pressure from 1 to 10MPa. There is a significant difference between loading and unloading process. This is caused by irreversible deformation of pores and microcracks. The existence of water inside samples leads to a change of permeability on the order of magnitudes from 10(-13) to 10(-15) m(2). Water saturation also influences the sandstone porosity significantly. We observed that the gas relative porosity almost decreases linearly with the increase of water saturation. A simple power law is modified to describe the relationship between gas effective permeability and porosity.
机译:了解气体的孔隙率和渗透率在气体存储,回收和核废料处置中很重要。在本文中,我们重点研究了在装卸循环中不同含水饱和度条件下砂岩的气孔率和渗透率变化。通过改进的方法,我们制备了水饱和度从0到81%的样品。测试结果表明,气体有效渗透率和孔隙度对围压很敏感。在1至10MPa的低压下尤其如此。加载和卸载过程之间存在显着差异。这是由于孔和微裂纹的不可逆变形引起的。样品内部水的存在导致渗透率从10(-13)到10(-15)m(2)数量级变化。含水饱和度也显着影响砂岩孔隙度。我们观察到,气体的相对孔隙度几乎随水饱和度的增加呈线性下降。修改了简单的幂定律,以描述气体有效渗透率和孔隙率之间的关系。

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