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Fault Slip Induced By Injection of Water and Pore Fluid Flow

机译:注射水和孔隙流体流动引起的故障滑动

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The model experiments which simulated shear slip induced by injection of pore fluid have been conducted under triaxial compressive stress condition using a roughened bare fault. The objective is to understand characteristics of the induced slip behaviour, especially after the slip initiation obeying Coulomb failure criterion and pore fluid behaviour associated with the induced slip. Experimental results showed that intermittent slip occurred in all the injection-induced slip experiments. Moreover, it was also found that the pore fluid flow into the fault increased instantaneously accompanying with dynamic slip, which represents a part of higher slip velocity (V > 0.05 mm/s, Vmax of 0.4 mm/s) in the intermittent slip. Quantitative estimation on the volume of the inflow of pore fluid during the dynamic slip suggested that a shear dilatancy would cause the instantaneous increase in pore fluid flow that occurred with the slip.
机译:使用粗糙的裸片故障,在三轴压缩应力条件下进行了通过注射孔隙流体诱导的模拟剪切滑移的模型实验。目的是了解诱导的滑移行为的特征,尤其是在滑动开始后遵循与诱导滑动相关的库仑失效标准和孔隙流体行为。实验结果表明,在所有注射诱导的滑动实验中发生间歇性滑移。此外,还发现,孔隙流体流入故障,瞬间伴随动态滑动,这表示间歇滑移中的较高滑动速度(V> 0.05mm / s,Vmax为0.4mm / s的Vmax的一部分。动态滑移过程中孔隙流量的量的定量估计表明,剪切稀释性会导致滑动发生的孔隙流体流动的瞬时增加。

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