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Spatial distribution of seismic energy rate of tectonic tremors in subduction zones

机译:俯冲带构造地震震能量速率的空间分布

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The sizes of deep tectonic tremors have never been accurately evaluated as a physical quantity. Here we estimate tremor size as the band-limited seismic energy rate at 2-8Hz, with accurate evaluation of the path attenuation and site amplification of seismic waves in four subduction zones: Nankai, Cascadia, Jalisco, and South Chile. The size-frequency statistics of seismic energy rate, which are characterized by the median measure for each subregion, are spatially variable. The spatial variations are categorized into three types, with each type corresponding to a different tremor migration behavior. In type A regions where tremor zone is wider, seismic energy rates are highly variable in the dip direction, and tremor activities are usually initiated in the less energetic tremor zone. Some of them further penetrate into the energetic tremor zone and subsequently migrate for long distances in the strike direction. Type B regions are characterized by relatively narrow tremor zones, minor variations in energy rates in the dip direction, and long-distance migration in the strike direction. Type C regions are characterized by isolated clusters of tremor activities without migration and by independent failure of each small tremor cluster. Given that the spatial distributions of tremor energy rates reflect heterogeneities in the strength of the plate interface, such distributions, which would be controlled by the width of tremor zone, may determine the regional style of slow-earthquake behavior. Some energetic tremor regions act as switches that trigger large slow slip events, especially in type A regions.
机译:尚未将深部构造震颤的大小准确地评估为物理量。在这里,我们将震颤大小估计为2-8Hz处的带限地震能量速率,并准确评估了四个俯冲带(南开,卡斯卡迪亚,哈利斯科州和智利南部)地震波的路径衰减和站点放大。以每个子区域的中位数测量为特征的地震能量速率的大小-频率统计在空间上是可变的。空间变化可分为三种类型,每种类型对应于不同的震颤迁移行为。在震颤带较宽的A型区域中,地震能量速率在倾角方向上变化很大,并且震颤活动通常在能量较低的震颤带中启动。它们中的一些进一步渗入高能震颤区,随后沿打击方向迁移很长一段距离。 B型区域的特点是震颤带相对较窄,在垂下方向的能量速率变化很小,在走向上的长距离迁移。 C型区域的特点是孤立的震颤活动簇没有迁移,每个小震颤簇独立失效。考虑到震级能量速率的空间分布反映了板界面强度的异质性,这种分布将由震颤区的宽度来控制,这可能决定慢地震行为的区域性。一些高能震颤区域充当触发大的缓慢滑移事件的开关,尤其是在A型区域。

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