首页> 外文期刊>Journal of Volcanology and Geothermal Research >Structural evolution beneath Sakurajima Volcano, Japan, revealed through rounds of controlled seismic experiments
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Structural evolution beneath Sakurajima Volcano, Japan, revealed through rounds of controlled seismic experiments

机译:通过几轮受控地震实验揭示了日本樱岛火山下的结构演化

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Structural evolution beneath an active volcano is detected as the variation of seismic reflectivity through controlled seismic experiments, which is interpreted as being associated with discharging magma. The target of the present study is Sakurajima Volcano, which is one of the most active volcanoes in Japan. Six rounds of seismic experiments with controlled sources have been conducted annually at the volcano. Two seismic reflection profiles are obtained from the datasets for each successful round of experiments. The experiments reveal clear annual variation in seismic reflectivity at a depth of 6.2 km in the northeastern part of Sakurajima. The reflectivity is maximum in December 2009 upon the first intrusion of magma and decreases gradually until December 2013, which coincides with the inflation and deflation cycle of Sakurajima Volcano. Reflectivity variation occurred in the embedded clear reflector at depth. An evolving sandwiched structure in the intermediate layer is used as the reflector model. Lower-velocity magma embedded in the intermediate layer and its succeeding velocity increment explain the variation range of reflectivity. This is interpreted as a temperature decrease associated with discharging magma at depth. The present study describes a new approach for instantaneously sensing magma properties and for monitoring active volcanoes. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过受控地震实验,可以将活动火山下面的结构演化检测为地震反射率的变化,这被解释为与岩浆排放有关。本研究的目标是樱岛火山,这是日本最活跃的火山之一。每年在火山上进行六轮受控来源的地震实验。对于每轮成功的实验,从数据集中获得两个地震反射剖面。实验揭示了樱岛东北部6.2 km深度地震反射率的明显年度变化。反射率在岩浆首次侵入时于2009年12月达到最高,并逐渐降低,直到2013年12月,这与樱岛火山的通货膨胀和通缩周期相吻合。嵌入式透明反射镜在深处会发生反射率变化。中间层中不断发展的三明治结构被用作反射器模型。埋在中间层的低速岩浆及其随后的速度增量解释了反射率的变化范围。这被解释为与深度排放岩浆有关的温度下降。本研究描述了一种新的方法,用于瞬时感测岩浆性质和监视活火山。 (C)2016 Elsevier B.V.保留所有权利。

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