Mathematical model of the stick-slip effect for describing the “drumbeat” seismic regime during the eruption of the Kizimen volcano in Kamchatka

Parovik Roman, Shakirova Alexandra, Firstov Pavel
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引用次数: 2

Abstract

During the eruption of the Kizimen volcano in 2010-2013. There was a uniform squeezing of the viscous lava flow. Simultaneously with its movement, earthquakes with an unusual quasi-periodicity were recorded, the"drumbeats"mode. In this work, we show that these earthquakes were generated by the movement of the flow front, which was observed for the first time in the practice of volcanological research. We represent the movement of the flow as an intermittent slip with the inclusion of the"stick-slip"mechanism with the initiation of a self-oscillating process. The plausibility of the phenomenological model at the qualitative level is confirmed by the mathematical model of a fractional nonlinear oscillator.
描述堪察加克孜门火山喷发时“鼓点”地震状态的粘滑效应的数学模型
在2010-2013年克孜门火山爆发期间。粘性熔岩流被均匀地挤压着。在它运动的同时,记录了一种不寻常的准周期性地震,即“鼓点”模式。在这项工作中,我们首次在火山学研究实践中观察到这些地震是由流锋运动引起的。我们将流动的运动表示为间歇性滑移,其中包含了“粘滑”机制,并启动了自振荡过程。用分数阶非线性振荡器的数学模型证实了现象学模型在定性水平上的合理性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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