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An exponential build-up in seismic energy suggests a months-long nucleation of slow slip in Cascadia

机译:地震能量的指数堆积表明,在Cascadia的慢速滑动的数月长核

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Slow slip events result from the spontaneous weakening of the subduction megathrust and bear strong resemblance to earthquakes, only slower. This resemblance allows us to study fundamental aspects of nucleation that remain elusive for classic, fast earthquakes. We rely on machine learning algorithms to infer slow slip timing from statistics of seismic waveforms. We find that patterns in seismic power follow the 14-month slow slip cycle in Cascadia, arguing in favor of the predictability of slow slip rupture. Here, we show that seismic power exponentially increases as the slowly slipping portion of the subduction zone approaches failure, a behavior that shares a striking similarity with the increase in acoustic power observed prior to laboratory slow slip events. Our results suggest that the nucleation phase of Cascadia slow slip events may last from several weeks up to several months.
机译:缓慢的事件是由于刨厂的自发削弱了巨大的弱势,并与地震相比强烈相似,只能慢。这种相似允许我们研究核心的基本方面,仍然难以实现经典的快速地震。我们依靠机器学习算法来推断出地震波形统计数据的缓慢滑动时机。我们发现地震力量的模式遵循Cascadia的14个月缓冲循环,争论支持缓冲破裂的可预测性。这里,我们表明,随着俯冲区域的缓慢滑动部分发生故障的缓慢滑动部分,地震功率呈指数增加,这是与在实验室缓慢滑动事件之前观察到的声功率增加的行为。我们的研究结果表明,Cascadia缓慢滑动事件的成核阶段可能持续数周高达几个月。

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