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Detecting aseismic strain transients from seismicity data

机译:从地震数据检测地震应变瞬变

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Aseismic deformation transients such as fluid flow, magma migration, and slow slip can trigger changes in seismicity rate. We present a method that can detect these seismicity rate variations and utilize these anomalies to constrain the underlying variations in stressing rate. Because ordinary aftershock sequences often obscure changes in the background seismicity caused by aseismic processes, we combine the stochastic Epidemic Type Aftershock Sequence model that describes aftershock sequences well and the physically based rate‐ and state‐dependent friction seismicity model into a single seismicity rate model that models both aftershock activity and changes in background seismicity rate. We implement this model into a data assimilation algorithm that inverts seismicity catalogs to estimate space‐time variations in stressing rate. We evaluate the method using a synthetic catalog, and then apply it to a catalog of M ≥ 1.5 events that occurred in the Salton Trough from 1990 to 2009. We validate our stressing rate estimates by comparing them to estimates from a geodetically derived slip model for a large creep event on the Obsidian Buttes fault. The results demonstrate that our approach can identify large aseismic deformation transients in a multidecade long earthquake catalog and roughly constrain the absolute magnitude of the stressing rate transients. Our method can therefore provide a way to detect aseismic transients in regions where geodetic resolution in space or time is poor.
机译:诸如流体流动,岩浆迁移和缓慢滑动之类的地震变形瞬变会触发地震活动率的变化。我们提出了一种可以检测这些地震活动率变化并利用这些异常来限制应力率潜在变化的方法。由于普通的余震序列通常会掩盖由地震过程引起的背景地震活动的变化,因此我们将很好地描述余震序列的随机流行类型余震序列模型和基于物理的基于速率和状态的摩擦地震模型,结合为一个单独的地震速率模型,模拟余震活动和背景地震活动率的变化。我们将此模型实施为数据同化算法,该算法将地震活动目录倒转以估算应力率的时空变化。我们使用综合目录对方法进行评估,然后将其应用到1990年至2009年发生在Salton槽中的M≥1.5事件的目录中。我们通过将其与大地测量滑移模型的估计值进行比较来验证我们的应力率估计值黑曜石丘陵断层发生大蠕变事件。结果表明,我们的方法可以识别出数十年长地震目录中的大地震变形瞬变,并大致限制了应力瞬变的绝对幅度。因此,我们的方法可以提供一种在空间或时间的大地测量分辨率较差的区域中检测地震瞬变的方法。

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