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Effect of initial damage on rock pulverization along faults

机译:初始破坏对沿断层岩石粉碎的影响

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Pulverized rocks have been found in the damage zone around the San Andreas Fault, at distances greater than 100 m from the fault core. This damage is atypical in that it is pervasive and strain is not localized along main fractures as expected at these distances from the fault core. With high strain rate experiments, the authors have previously shown that above a strain rate threshold, the localization of strain along a few fractures is inhibited. Pulverized rocks may be generated by seismic waves at high frequency. Here we generalize these conclusions by discussing the effect of the initial fracture network in the sample on the transition from strain localization along a few fractures to diffuse damage throughout the sample. Experimental data are compared with statistical theory for fracture propagation. This analysis shows that the threshold in strain rate is a power law of initial fracture density and that a pre-damaged rock is easier to pulverize. This implies that pulverized rocks observed on the field may result from successive loadings.
机译:在圣安德烈亚斯断层周围的破坏区发现了粉状岩石,离断层核心的距离大于100 m。这种破坏是非典型的,因为它是普遍存在的,并且应变未沿着主断裂沿局部断裂带的这些距离分布。通过高应变率实验,作者先前已经表明,在应变率阈值以上,沿几个裂缝的应变定位会受到抑制。可能由高频地震波产生粉状岩石。在这里,我们通过讨论样品中初始断裂网络对从沿几个裂缝的应变局部化到整个样品中的扩散破坏过渡的影响,来概括这些结论。将实验数据与统计理论进行比较,以进行裂缝扩展。该分析表明,应变速率的阈值是初始裂缝密度的幂律,并且预先损坏的岩石更容易粉碎。这意味着在野外观察到的粉状岩石可能源于连续的载荷。

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