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On the effective stress law for rock-on-rock frictional sliding, and fault slip triggered by means of fluid injection

机译:关于岩石 - 岩石摩擦滑动的有效应力规律,以及流体注入引发的断层滑动

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摘要

Fluid injection into rocks is increasingly used for energy extraction and for fluid wastes disposal, and can trigger/induce small- to medium-scale seismicity. Fluctuations in pore fluid pressure may also be associated with natural seismicity. The energy release in anthropogenically-induced seismicity is sensitive to amount and pressure of fluid injected, through the way that seismic moment release is related to slipped area, and is strongly affected by the hydraulic conductance of the faulted rock mass. Bearing in mind the scaling issues that apply, fluid injection-driven fault motion can be studied on laboratory-sized samples. Here, we investigate both stable and unstable induced fault slip on pre-cut planar surfaces in Darley Dale and Pennant sandstones, with or without granular gouge. They display contrasting permeabilities, differing by a factor of 105, but mineralogies are broadly comparable. In permeable Darley Dale sandstone fluid can access the fault plane through the rock matrix and the effective stress law is followed closely. Pore pressure change shifts the whole Mohr circle laterally. In tight Pennant sandstone fluid only injects into the faultplane itself; stress state in the rock matrix is unaffected. Sudden access by overpressured fluid to the fault plane via hydrofracture causes seismogenic fault slips.
机译:注入岩石的流体越来越多地用于能量提取和流体废物处理,并且可以触发/诱发中小型地震活动。孔隙流体压力的波动也可能与自然地震有关。人为引起的地震活动中的能量释放通过地震矩释放与滑移面积有关的方式对注入的流体的量和压力敏感,并且受断层岩体的水力传导的强烈影响。考虑到适用的缩放问题,可以对实验室大小的样本进行流体注入驱动的断层运动研究。在这里,我们研究在达利戴尔和彭南特砂岩的预切平面上,不论有无颗粒凿,都产生了稳定和不稳定的断层滑动。它们显示出不同的渗透率,相差105倍,但矿物学具有大致可比性。在渗透性Darley Dale中,砂岩流体可以通过岩石基质进入断层面,并且有效地遵循有效应力定律。孔隙压力的变化会横向移动整个莫尔圆。在致密的彭南特砂岩中,流体仅注入断层板本身;岩石基体中的应力状态不受影响。超压流体通过水力压裂突然进入断层平面,从而引起地震断层滑动。

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