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Mechanisms of slip nucleation during earthquakes

机译:地震中滑移成核的机理

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摘要

Slip nucleation during earthquakes is apparently analogous to rupture nucleation within an intact rock sample subjected to triaxial loading. The observations indicate that both these nucleation processes initiate within a relatively small volume and in both the slip propagates unstably along a quasi-planar surface. In both processes a single, pre-existing, shear fracture cannot nucleate the large-scale slip, and in both a 'process zone' that includes several interacting fractures in a small volume are required to initiate the unstable slip. Both processes require rupture of intack rocks, generate complex fracture geometry, and are associated with intense energy-release rate during slip. Recent observations and analyses are used to correlate rupture nucleation in laboratory tests with nucleation events of large earthquakes. It is proposed that earthquake nucleation occurs by the interaction among multiple fractures within a small volume that develops into unstable yielding of the healed fault zone.
机译:地震中的滑动成核作用显然类似于承受三轴载荷的完整岩石样品中的破裂成核作用。观察结果表明,这两个成核过程都在相对较小的体积内开始,并且在两个滑动中均沿准平面表面不稳定地传播。在这两个过程中,一个单一的,预先存在的剪切裂缝不能使大规模滑移成核,而在这两个“过程区”中,都需要少量的多个相互作用的裂缝来引发不稳定滑移。这两个过程都需要破裂内生岩石,产生复杂的裂缝几何形状,并且在滑动过程中与强烈的能量释放速率有关。最近的观察和分析被用于将实验室测试中的破裂形核与大地震的形核事件联系起来。提出地震成核是由于小体积内多个裂缝之间的相互作用而发生的,并发展为愈合断层带的不稳定屈服。

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