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首页> 外文期刊>Journal of Volcanology and Geothermal Research >Underwater records of submarine volcanic activity: El Hierro (Canary Islands 2011-2012) eruption
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Underwater records of submarine volcanic activity: El Hierro (Canary Islands 2011-2012) eruption

机译:潜艇火山活动的水下记录:El Hierro(加那利群岛2011-2012)爆发

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摘要

We present the monitoring of a submarine volcanic eruption that took place near the southernmost emerged land of El Hierro Island (Canary Islands, Spain), from October 2011 to February 2012. Right after the onset of the eruption, in mid-October 2011, we deployed an offshore geophone array for the purpose of monitoring the submarine eruptive activity signals. It acquired continuous data from October 2011 to May 2012, sometime after the end of the eruption. The array consisted of 8 high-frequency, 3-component geophones assembled into a cable string, with 6 m of separation. The geophone string was installed in La Restinga Harbor at a distance of less than 2 km from the volcanic edifice. The dataset acquired with the array is a unique continuous acoustic record of the activity associated with this eruption. We analyzed the continuous signal of the eruptive activity, with special interest in those events reflecting the eruption dynamics. Our results show that the geophone array was recording acoustic waves from a back-azimuth source corresponding to the position of the submarine vent, traveling at a speed of 1510 m/s, compatible with the speed of sound in water. Acoustic data shows a good correlation with the seismic data recorded on land for the case of earthquake occurrence. In addition, it provides relevant information towards the understanding of the eruptive surface activity. Therefore, this methodology can be successfully used in cases of submarine eruptions. (C) 2020 Published by Elsevier B.V.
机译:我们在2011年10月至2012年10月到2012年10月,我们展示了在南最南端出现的土地上发生的潜艇火山喷发。在2011年10月开始爆发后,我们部署了海上地震阵阵列,以监视潜艇喷发活动信号。它从2011年10月到2012年10月收购了连续数据,在爆发结束后的某个时间。阵列由汇集到电缆串的8个高频,3组件的地震检塞器组成,分离为6米。地震弦串安装在La Restinga港,距离火山大厦不到2公里。使用阵列获取的数据集是与此萌出相关的活动的唯一连续声学记录。我们分析了爆发活动的连续信号,具有对反映火山爆发动态的事件的特殊兴趣。我们的结果表明,地震阵阵列正在从对应于潜艇通风口的位置的后方向源记录声波,以1510米/秒的速度行进,与水中的声速兼容。声学数据显示出良好的相关性与地震发生的土地上的地震数据相关。此外,它提供了有关了解爆发表面活动的相关信息。因此,这种方法可以在潜艇爆发的情况下成功使用。 (c)2020由elsevier b.v发布。

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