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首页> 外文期刊>Geophysical Research Letters >A Dynamic Rupture Source Model for Very Low-Frequency Earthquake Signal Without Detectable Nonvolcanic Tremors
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A Dynamic Rupture Source Model for Very Low-Frequency Earthquake Signal Without Detectable Nonvolcanic Tremors

机译:没有可检测的非狼疮震颤的非常低频地震信号的动态破裂源模型

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摘要

A very low-frequency earthquake is a type of seismic event that is rich in low frequencies and depleted in higher frequencies compared to regular fast local earthquakes of similar magnitude. The source process behind very low-frequency earthquakes is still poorly understood. Here we present a dynamic rupture source model for very low-frequency earthquake signal without detectable associated tremors. We show that a single asperity model with sudden stress drop followed by a rate strengthening effect damps the seismic radiation and increases event duration. We compute synthetic seismograms for our source model. The synthetic signal successfully reproduces the features of observed very low-frequency earthquakes. Moreover, the synthetic very low-frequency earthquake signal in 0.02-0.05 Hz is not accompanied by detectable tremor signals at 2-8 Hz. Our results help explain why in some cases we observe very low-frequency earthquakes without accompanying tremor.
机译:非常低频的地震是一种抗震事件的抗震事件,与常规快速局部地震相比,较高频率耗尽的频率较高。 非常低频地震背后的源过程仍然很清楚。 在这里,我们在没有可检测的相关震颤的情况下为非常低频的地震信号提供动态破裂源模型。 我们表明,具有突然应力下降的单个锐化模型,然后率加强效果抑制地震辐射并提高了事件持续时间。 我们计算我们来源模型的合成地震图。 合成信号成功地再现了观察到的非常低频地震的特征。 此外,0.02-0.05Hz的合成非常低频地震信号不伴随2-8Hz的可检测震颤信号。 我们的结果有助于解释为什么在某些情况下,我们在某些情况下观察到非常低频的地震,而不会伴随震颤。

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