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Frictional stability-permeability relationships for fractures in shales

机译:摩擦稳定性渗透性关系对Shales骨折

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There is wide concern that fluid injection in the subsurface, such as for the stimulation of shale reservoirs or for geological CO2 sequestration (GCS), has the potential to induce seismicity that may change reservoir permeability due to fault slip. However, the impact of induced seismicity on fracture permeability evolution remains unclear due to the spectrum of modes of fault reactivation (e.g., stable versus unstable). As seismicity is controlled by the frictional response of fractures, we explore friction-stability-permeability relationships through the concurrent measurement of frictional and hydraulic properties of artificial fractures in Green River shale (GRS) and Opalinus shale (OPS). We observe that carbonate-rich GRS shows higher frictional strength but weak neutral frictional stability. The GRS fracture permeability declines during shearing while an increased sliding velocity reduces the rate of permeability decline. By comparison, the phyllosilicate-rich OPS has lower friction and strong stability while the fracture permeability is reduced due to the swelling behavior that dominates over the shearing induced permeability reduction. Hence, we conclude that the friction-stability-permeability relationship of a fracture is largely controlled by mineral composition and that shale mineral compositions with strong frictional stability may be particularly subject to permanent permeability reduction during fluid infiltration.
机译:人们广泛关注的是,地下流体注入,如页岩储层的增产或地质CO2封存(GCS),有可能诱发地震活动,从而因断层滑动而改变储层渗透率。然而,由于断层再活化模式的频谱(例如,稳定与不稳定),诱发地震活动对裂缝渗透率演化的影响尚不清楚。由于地震活动由裂缝的摩擦响应控制,我们通过同时测量绿河页岩(GRS)和蛋白石页岩(OPS)中人工裂缝的摩擦和水力特性来探索摩擦稳定性-渗透性关系。我们观察到富含碳酸盐的GRS显示出较高的摩擦强度,但中性摩擦稳定性较弱。剪切过程中,GRS裂缝渗透率下降,而滑动速度增加会降低渗透率下降的速度。相比之下,富含层状硅酸盐的OPS具有较低的摩擦力和较强的稳定性,而裂缝渗透率则因膨胀行为而降低,膨胀行为主导了剪切诱导的渗透率降低。因此,我们得出结论,裂缝的摩擦稳定性-渗透率关系在很大程度上受矿物成分的控制,并且具有强摩擦稳定性的页岩矿物成分在流体渗透期间可能会特别受到永久渗透率降低的影响。

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