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Complex behavior and source model of the tremor at Arenal volcano, Costa Rica

机译:哥斯达黎加阿雷纳尔火山地震的复杂行为和震源模型

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摘要

Typical records of volcanic tremor and explosion quakes at Arenal volcano are analyzed with a high-resolution time-frequency method. The main characteristics of these seismic signals are: (1) numerous regularly spaced spectral peaks including both odd and even overtones; (2) frequency gliding in the range [0.9-2] Hz of the fundamental peak; (3) frequency jumps with either positive or negative increments; (4) tremor episodes with two simultaneous systems of spectral peaks affected by independent frequency gliding; (5) progressive transitions between spasmodic tremor and harmonic tremor; (6) lack of clear and systematic relationship between the occurrence of explosions and tremor. Some examples of alternation between two states of oscillation characterized by different fundamental frequencies are also observed. Some tremor and explosion codas are characterized by acoustic and seismic waves with identical spectral content and frequency gliding, which suggests a common excitation process. We propose a source model for the tremor at Arenal in which intermittent gas flow through fractures produces repetitive pressure pulses. The repeating period of the pulses is stabilized by a feedback mechanism associated with standing or traveling waves in the magmatic conduit. The pressure pulses generate acoustic waves in the atmosphere and act as excitation of the interface waves in the conduit. When the repeating period of the pulses is stable enough, they produce regularly spaced spectral peaks by the Dirac comb effect and hence harmonic tremor. When the period stability is lost, because of failures in the feedback mechanism, the tremor becomes spasmodic. The proposed source model of tremor is similar to the sound emission process of a clarinet. Fractures in the solid or viscous layer capping the lava pool in the crater act as the clarinet reed, and the conduit filled with low velocity bubbly magma is equivalent to the pipe of the musical instrument. The frequency gliding is related to variations of the pressure in the conduit, which modify the gas fraction, the wave velocity and, possibly, the length of the resonator. Moreover, several observations suggest that two seismic sources, associated with two magmatic conduits, are active in Arenal volcano. They could explain in particular the apparent independence of tremor and explosions and the episodes of tremor displaying two simultaneous systems of spectral peaks.
机译:使用高分辨率时频方法分析了阿雷纳尔火山的火山地震和爆炸地震的典型记录。这些地震信号的主要特征是:(1)许多规则间隔的频谱峰,包括奇数和偶数泛音; (2)频率滑移在基本峰值的[0.9-2] Hz范围内; (3)频率跳跃以正数或负数递增; (4)由独立的频率滑动影响的同时出现两个频谱峰值的震颤事件; (5)痉挛性震颤和谐波性震颤之间的进行性转变; (6)爆炸与震颤之间缺乏清晰,系统的关系。还观察到以不同的基频为特征的两种振荡状态之间交替的一些例子。一些震颤和爆炸声的特征是声波和地震波具有相同的频谱含量和频率滑动,这表明了一个共同的激发过程。我们提出了阿雷纳尔地震的震源模型,在该模型中,通过裂缝的间歇性气流会产生重复的压力脉冲。脉冲的重复周期通过与岩浆管道中驻波或行波关联的反馈机制得以稳定。压力脉冲在大气中产生声波,并作为管道中界面波的激发。当脉冲的重复周期足够稳定时,它们会通过狄拉克梳齿效应产生规则间隔的频谱峰,从而产生谐波震颤。当周期稳定性丧失时,由于反馈机制的故障,震颤会变成痉挛性的。所提出的震颤源模型类似于单簧管的声音发射过程。覆盖火山口熔岩池的固体或粘性层中的裂缝起着单簧管的作用,充满低速起泡岩浆的导管相当于乐器的导管。频率滑移与导管中压力的变化有关,后者会改变气体比例,波速以及谐振器的长度。此外,一些观察结果表明,与两个岩浆管道相关的两个地震源在阿雷纳尔火山中处于活动状态。他们可以特别解释地震和爆炸的明显独立性,以及震颤事件显示两个同时出现的光谱峰系统。

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