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Effects of confining pressure on the permeability of three rock types under compression

机译:围压对三种岩石在压缩状态下渗透率的影响

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摘要

Triaxial tests were conducted on three different rocks, under confining pressures of 1-15 MPa at 295 K using an ultra-compact triaxial cell. The samples were held for 24 h under the target consolidation pressure, and then constant strain-rate compression was applied measuring permeability. The structural changes were measured by thin section image analysis and micro-focus X-ray computed tomography. For the Shikotsu welded tuff, the permeability decreased monotonously with axial compression, mainly due to pore collapse. For the Kimachi sandstone, the permeability first decreased with increasing axial stress, then began to increase when the total lateral strain recovered its value before the application of confining pressure, and then maintained an almost constant value in the post-peak region. The minimum and final permeability decreased with increasing confining pressure mainly due to compaction and large plastic deformation of clay cementing materials. For the Inada granite, the tendency of permeability change during axial compression was almost the same as for the Kimachi sandstone. The final permeability was larger than that before compression, and the permeability decreased with smaller confining pressure mainly due to a decrease in the number and width of rupture planes and the absence of axial cracks from biotite. The permeability, however, increased under larger confining pressures mainly due to the formation of subrupture planes caused by the high stress concentration at the rough and stiff rupture plane under large confining pressure.
机译:使用超紧凑型三轴单元,在295 K的1-15 MPa围压下,在三种不同的岩石上进行了三轴测试。将样品在目标固结压力下保持24小时,然后施加恒定应变率压缩以测量渗透率。通过薄片图像分析和微焦点X射线计算机断层摄影术测量结构变化。对于Shikotsu焊接凝灰岩,渗透率随着轴向压缩而单调降低,这主要是由于孔塌陷。对于Kimachi砂岩,渗透率首先随着轴向应力的增加而降低,然后当总侧向应变在施加围压之前恢复其值时开始增加,然后在峰后区域保持几乎恒定的值。最小渗透率和最终渗透率随围压的增加而降低,这主要是由于粘土胶结材料的压实和大的塑性变形所致。对于Inada花岗岩,轴向压缩过程中渗透率变化的趋势与Kimachi砂岩几乎相同。最终的渗透率大于压缩前的渗透率,并且随着围压的减小,渗透率降低,这主要是由于破裂平面的数量和宽度的减少以及黑云母没有轴向裂缝的缘故。但是,在较大的围压下,渗透率增加了,这主要是由于在较大的围压下,在粗糙而坚硬的破裂面上的高应力集中所引起的次破裂面的形成。

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