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首页> 外文期刊>Journal of Volcanology and Geothermal Research >The trigger mechanism of low-frequency earthquakes on Montserrat
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The trigger mechanism of low-frequency earthquakes on Montserrat

机译:蒙特塞拉特低频地震的触发机制

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A careful analysis of low-frequency seismic events on Soufrieere Hills volcano, Montserrat, points to a source mechanism that is non-destructive, repetitive, and has a stationary source location. By combining these seismological clues with new field evidence and numerical magma flow modelling, we propose a seismic trigger model which is based on brittle failure of magma in the glass transition. Loss of heat and gas from the magma results in a strong viscosity gradient across a dyke or conduit. This leads to a buildup of shear stress near the conduit wall where magma can rupture in a brittle manner, as field evidence from a rhyolitic dyke demonstrates. This brittle failure provides seismic energy, the majority of which is trapped in the conduit or dyke forming the low-frequency coda of the observed seismic signal. The trigger source location marks the transition from ductile conduit flow to friction-controlled magma ascent. As the trigger mechanism is governed by the depth-dependent magma parameters, the source location remains fixed at a depth where the conditions allow brittle failure. This is reflected in the fixed seismic source locations.
机译:对蒙特塞拉特Soufrieere Hills火山上的低频地震事件的仔细分析指出,震源机制是非破坏性的,重复性的,并且震源位置固定。通过将这些地震学线索与新的现场证据和数值岩浆流模拟相结合,我们提出了一种基于玻璃化转变中岩浆脆性破坏的地震触发模型。岩浆产生的热量和气体损失会导致在堤坝或导管上形成强烈的粘度梯度。如流纹岩堤的现场证据所示,这会导致在管道壁附近形成剪切应力,在此处岩浆会以脆性方式破裂。这种脆性破坏提供了地震能,其中大部分被捕获在导管或堤中,形成了观测到的地震信号的低频尾波。触发源位置标志着从延性导管流向摩擦控制的岩浆上升的过渡。由于触发机制是由与深度有关的岩浆参数控制的,因此震源位置保持固定在一定深度,在该深度条件下会发生脆性破坏。这反映在固定的震源位置。

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