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Investigation of Flow Behavior through Hydraulic Fractures in Unconventional Gas Reservoirs under Tri-axial Drained Conditions

机译:三轴排水条件下非传煤气储层中液压骨折的流动性能研究

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Water-based fracking fluids are currently used to enhance the gas production from unconventional gas reservoirs, while the formation damage due to the interaction between rock matrix and residual water significantly reduce the pore space available for gas movement. In this paper, the effect of different fracturing fluids on fracture permeability is investigated using the same fractured siltstone sample in five rounds of cycling test (CO_2-CO_2-CO_2-water-CO_2). The experimental results reveal that the maximum confining pressure dominated fracture permeability. The fracture permeability for CO_2 at lOMPa confining pressure decreased by around 75% after applying 40MPa confining pressure. After water flooding in the fourth round, the fracture permeability for CO_2 was considerably reduced by around 70-85% compared with that in the second cycling test, and the influence of water flooding was much stronger at lower CO_2 injection pressure. The experimental results showed that the fracture permeability for gas reduced significantly after water flooding due to formation damage. Thus, liquid CO_2 is much more suitable than water as fracturing fluid for clay-abundant unconventional gas reservoirs.
机译:水基压裂流体目前用于增强从非常规气藏的天然气生产,而地层损害由于岩石基质和残余水之间的相互作用显著减少可用于气体运动的孔隙空间。在本文中,对裂缝渗透率不同的压裂液的效果进行了研究使用在五轮循环试验(CO_2-CO_2-CO_2 - 水 - CO_2)相同的裂隙粉砂岩样品。实验结果表明,该最大围压主导裂缝渗透率。在lOMPa围压对CO_2的裂缝渗透率施加40MPa的围压后降低75%左右。在第四轮注水之后,CO_2的裂缝渗透率通过围绕70-85%的显着降低与在第二循环试验相比较,并且水驱的影响是在较低CO_2喷射压力强得多。实验结果表明,气体的裂缝渗透率显著注水后因地层损害减少。因此,液体CO_2得多比水更适合作为压裂液对粘土 - 丰富的非常规气藏。

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