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首页> 外文期刊>Geophysical Research Letters >Ascending seismic source during an explosive eruption at Tungurahua volcano, Ecuador
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Ascending seismic source during an explosive eruption at Tungurahua volcano, Ecuador

机译:厄瓜多尔通古拉瓦火山爆发性喷发期间上升的地震源

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摘要

Application of seismic techniques to an explosion event at Tungurahua volcano, Ecuador, provided clear images to elucidate its source process. A source location method using high-frequency seismic amplitudes with an S-wave velocity of 2000 m/s indicates that the event was triggered at a depth of 6 km below the summit, and the source ascended toward the summit at a speed of about 1600 m/s. Waveform inversion of low-frequency signals at the event onset points to an isotropic mechanism with initial deflation at a similar depth of 6 km. The ascending source suggests that a pressure wave propagated along the magma conduit, triggering fragmentation of magma at shallow depths. Rapid decompression of magma in a shock tube has been considered to be an important mechanism for explosive eruptions triggered by ruptures at the magma surface. However, our study suggests that explosive eruptions are triggered by pressure disturbances in magma at depth.
机译:地震技术在厄瓜多尔通古拉瓦火山爆炸事件中的应用提供了清晰的图像,以阐明其震源过程。使用S波速度为2000 m / s的高频地震振幅的震源定位方法表明,该事件是在山顶以下6 km的深度触发的,震源以约1600的速度上升到山顶多发性硬化症。低频信号在事件开始时的波形反转指向各向同性机制,初始深度约为6 km,这是一个初始放气现象。上升源表明,压力波沿岩浆管道传播,触发了浅深度岩浆的破碎。激波管中岩浆的快速减压被认为是由岩浆表面破裂触发的爆发性爆发的重要机制。但是,我们的研究表明,爆发性喷发是由深部岩浆中的压力扰动触发的。

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