首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Frictional heterogeneities on carbonate-bearing normal faults: Insights from the Monte Maggio Fault, Italy
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Frictional heterogeneities on carbonate-bearing normal faults: Insights from the Monte Maggio Fault, Italy

机译:含碳酸盐正断层的摩擦非均质性:意大利蒙特马焦断层的见解

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Observations of heterogeneous and complex fault slip are often attributed to the complexity of fault structure and/or spatial heterogeneity of fault frictional behavior. Such complex slip patterns have been observed for earthquakes on normal faults throughout central Italy, where many of the M-w 6 to 7 earthquakes in the Apennines nucleate at depths where the lithology is dominated by carbonate rocks. To explore the relationship between fault structure and heterogeneous frictional properties, we studied the exhumed Monte Maggio Fault, located in the northern Apennines. We collected intact specimens of the fault zone, including the principal slip surface and hanging wall cataclasite, and performed experiments at a normal stress of 10MPa under saturated conditions. Experiments designed to reactivate slip between the cemented principal slip surface and cataclasite show a 3MPa stress drop as the fault surface fails, then velocity-neutral frictional behavior and significant frictional healing. Overall, our results suggest that (1) earthquakes may readily nucleate in areas of the fault where the slip surface separates massive limestone and are likely to propagate in areas where fault gouge is in contact with the slip surface; (2) postseismic slip is more likely to occur in areas of the fault where gouge is present; and (3) high rates of frictional healing and low creep relaxation observed between solid fault surfaces could lead to significant aftershocks in areas of low stress drop.
机译:异质和复杂断层滑动的观察通常归因于断层结构的复杂性和/或断层摩擦行为的空间异质性。在意大利中部正常断层的地震中已经观察到这种复杂的滑动模式,在亚平宁山脉中许多M-w 6至7级地震成核的深度在岩性以碳酸盐岩为主的深度。为了探索断层结构与非均质摩擦特性之间的关系,我们研究了位于亚平宁山脉北部的发掘出的蒙特马焦断层。我们收集了完整的断层带标本,包括主要的滑动面和悬挂的壁上的凯里斯特石,并在饱和条件下以10MPa的正应力进行了实验。旨在重新激活胶结主滑动面和凯克拉石之间的滑动的实验表明,当断层破坏时,应力下降3MPa,然后是速度中性摩擦行为和显着的摩擦修复。总的来说,我们的结果表明:(1)在断层滑动面将大量石灰岩分开的断层区域,地震很容易成核,并可能在断层泥与滑动面接触的区域传播。 (2)断层存在断层的地区更容易发生地震后滑移; (3)在固体断层表面之间观察到较高的摩擦愈合率和较低的蠕变松弛,可能会在低应力降的区域产生明显的余震。

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