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Longer aftershocks duration in extensional tectonic settings

机译:伸展构造环境中余震持续时间更长

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摘要

Aftershocks number decay through time, depending on several parameters peculiar to each seismogenic regions, including mainshock magnitude, crustal rheology, and stress changes along the fault. However, the exact role of these parameters in controlling the duration of the aftershock sequence is still unknown. Here, using two methodologies, we show that the tectonic setting primarily controls the duration of aftershocks. On average and for a given mainshock magnitude (1) aftershock sequences are longer and (2) the number of earthquakes is greater in extensional tectonic settings than in contractional ones. We interpret this difference as related to the different type of energy dissipated during earthquakes. In detail, (1) a joint effect of gravitational forces and pure elastic stress release governs extensional earthquakes, whereas (2) pure elastic stress release controls contractional earthquakes. Accordingly, normal faults operate in favour of gravity, preserving inertia for a longer period and seismicity lasts until gravitational equilibrium is reached. Vice versa, thrusts act against gravity, exhaust their inertia faster and the elastic energy dissipation is buffered by the gravitational force. Hence, for seismic sequences of comparable magnitude and rheological parameters, aftershocks last longer in extensional settings because gravity favours the collapse of the hangingwall volumes.
机译:余震数量会随时间衰减,具体取决于每个地震发生区域的几个参数,包括主震震级,地壳流变学和沿断层的应力变化。但是,这些参数在控制余震序列持续时间中的确切作用仍然未知。在这里,我们使用两种方法论表明,构造背景主要控制余震的持续时间。平均而言,对于给定的主震震级,(1)余震序列更长;(2)伸展构造背景的地震次数比收缩构造的地震次数大。我们将这种差异解释为与地震过程中耗散的不同能量类型有关。详细地讲,(1)重力与纯弹性应力释放的共同作用控制着扩张地震,而(2)纯弹性应力释放控制着收缩地震。因此,正常断层有利于重力作用,将惯性保持更长的时间,地震活动持续到达到重力平衡为止。反之亦然,推力反作用于重力,更快地耗尽惯性,并且弹性能量耗散受到重力的缓冲。因此,对于震级和流变参数相当的地震序列,由于重力有利于吊壁体积的塌陷,余震在延伸环境中持续时间更长。

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