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Earthquake size distribution in subduction zones linked to slab buoyancy

机译:与平板浮力有关的俯冲带地震规模分布

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The occurrence of subduction zone earthquakes is primarily controlled by the state of stress on the interface between the subducting and overriding plates. This stress state is influenced by tectonic properties, such as the age of the subducting plate and the rate of plate motion~(1-4). It is difficult to directly measure stress on a plate interface. However, the stress state can be inferred using the Gutenberg-Richter relationship's~5 b-value, which characterizes the relative number of small compared to large earthquakes and correlates negatively with differential stress~(6-13). That is, a subduction zone characterized by relatively frequent large earthquakes has a low b-value and a high stress state.The b-value for subduction zonesworldwide varies significantly~(14,15), but the source of this variance is unclear. Here we use the Advanced National Seismic System earthquake catalogue to estimate b-values for 88 sections in different subduction zones globally and compare the b-values with the age of the subducting plate and plate motions. The b-value correlates positively with subducting plate age, so that large earthquakes occur more frequently in subduction zones with younger slabs, but there is no correlation between b-value and plate motion. Given that younger slabs are warmer and more buoyant, we suggest that slab buoyancy is the primary control on the stress state and earthquake size distribution in subduction zones.
机译:俯冲带地震的发生主要受俯冲板与上覆板之间界面应力状态的控制。这种应力状态受构造性质的影响,例如俯冲板的年龄和板运动速率(1〜4)。难以直接测量板界面上的应力。但是,可以使用古腾堡-里希特关系的〜5 b值来推断应力状态,该关系表征了小地震与大地震的相对数量,并且与微分应力负相关(6-13)。也就是说,一个以大地震相对频繁发生为特征的俯冲带,其b值较低,应力状态较高,全世界俯冲带的b值变化很大(14,15),但这种变化的根源尚不清楚。在这里,我们使用高级国家地震系统地震目录来估计全球不同俯冲带中88个断面的b值,并将b值与俯冲板块和板块运动的年龄进行比较。 b值与俯冲板块年龄呈正相关,因此,在板块较年轻的俯冲带中,大地震发生的频率更高,但b值与板块运动之间没有相关性。考虑到较年轻的板块温度更高且浮力更高,我们建议板块浮力是俯冲带应力状态和地震规模分布的主要控制因素。

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