首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Synchronization of Great Subduction Megathrust Earthquakes: Insights From Scale Model Analysis
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Synchronization of Great Subduction Megathrust Earthquakes: Insights From Scale Model Analysis

机译:大型水厂的同步巨大地震:尺度模型分析中的见解

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The magnitude of great subduction megathrust earthquakes is controlled mainly by the number of adjacent asperities failing synchronously and the resulting rupture length. Here we investigate experimentally the long-term recurrence behavior of a pair of asperities coupled by static stress transfer over hundreds of seismic cycles. We statistically analyze long (c. 500ka) time series of M8-9 analogue earthquakes simulated using a seismotectonic scale model approach with two aims: First, to constrain probabilistic measures (frequency-size distribution, variability) useful for hazard assessment and, second, to relate them with geometric observables (coseismic slip pattern, locking pattern). We find that the number of synchronized asperity failures relative to the number of individual asperity failures as well as the coefficients of variation of recurrence intervals and seismic moment scale with the logarithm of stress coupling between the asperities. Accordingly, tighter packed asperities tend to recur more periodically and with a more characteristic magnitude while more distant asperities show clustering of more variable sized events. The probability of synchronized failures seems to be controlled to first order by geometrical relations (i.e., spacing and offset of asperities). The effects of rheological properties are evident but it remains to be explored to which extent they vary in nature and how sensitive the system is to those.
机译:大型俯冲大散系地震的大小主要由相邻粗糙度的数量同步而受到控制,并且产生的破裂长度。在这里,我们通过实验研究了一对慢性的长期复发行为,通过静态应力转移超过数百种地震循环。我们统计分析长(C.500KA)时间序列M8-9模拟地震,模拟了两个目的的地震规模模型方法模拟:首先,限制有助于危险评估的概率措施(频率尺寸分布,变异性),而第二,将它们与几何观察结果相关联(电动滑动图案,锁定图案)。我们发现相对于各个粗糙度故障的数量以及复发间隔的变化系数和与粗糙度之间的应力耦合的对数的变化系数的同步的粗糙度失败的数量以及谐波的数量。因此,更紧密的速度倾向于更定期地重复并且具有更特征的幅度,而更远的粗糙度显示出更多可变尺寸的事件的聚类。同步故障的概率似乎通过几何关系(即,间距和粗糙的偏移)来控制到第一阶。流变性质的影响是显而易见的,但它仍有待探索的是,它们在其自然界变化并且系统对那些人有多敏感。

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