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Self-sustained vibrations in volcanic areas extracted by Independent Component Analysis: A review and new results

机译:通过独立分量分析提取的火山区自持振动:回顾与新结果

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We investigate the physical processes associated with volcanic tremor and explosions. A volcano is a complex system where a fluid source interacts with the solid edifice so generating seismic waves in a regime of low turbulence. Although the complex behavior escapes a simple universal description, the phases of activity generate stable (self-sustained) oscillations that can be described as a non-linear dynamical system of low dimensionality. So, the system requires to be investigated with non-linear methods able to individuate, decompose, and extract the main characteristics of the phenomenon. Independent Component Analysis (ICA), an entropy-based technique is a good candidate for this purpose. Here, we review the results of ICA applied to seismic signals acquired in some volcanic areas. We emphasize analogies and differences among the self-oscillations individuated in three cases: Stromboli (Italy), Erebus (Antarctica) and Volcán de Colima (Mexico). The waveforms of the extracted independent components are specific for each volcano, whereas the similarity can be ascribed to a very general common source mechanism involving the interaction between gas/magma flow and solid structures (the volcanic edifice). Indeed, chocking phenomena or inhomogeneities in the volcanic cavity can play the same role in generating self-oscillations as the languid and the reed do in musical instruments. The understanding of these background oscillations is relevant not only for explaining the volcanic source process and to make a forecast into the future, but sheds light on the physics of complex systems developing low turbulence.
机译:我们调查与火山震颤和爆炸有关的物理过程。火山是一个复杂的系统,其中流体源与固体建筑物相互作用,因此在低湍流状态下产生地震波。尽管复杂的行为没有简单的通用描述,但活动的各个阶段会产生稳定的(自我维持的)振荡,可以将其描述为低维的非线性动力学系统。因此,需要使用能够对现象的主要特征进行个体化,分解和提取的非线性方法来研究该系统。为此,基于熵的独立成分分析(ICA)是一个不错的选择。在这里,我们回顾了将ICA应用于某些火山区获得的地震信号的结果。我们强调三种情况下个体振荡的类比和差异:斯特龙博利(意大利),埃雷布斯(南极洲)和沃尔坎·德科利马(墨西哥)。提取的独立成分的波形对于每个火山都是特定的,而相似性可以归因于涉及气体/岩浆流与固体结构(火山大厦)之间相互作用的非常普遍的共同源机制。确实,火山洞中的cho塞现象或不均匀性在产生自激方面起着与乐器中的鱼和芦苇相同的作用。对这些背景振荡的理解不仅对解释火山源过程和对未来做出预测具有重要意义,而且对发展低湍流的复杂系统的物理学也有启发。

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