...
首页> 外文期刊>Journal of Volcanology and Geothermal Research2012V243-244NOCT,15 >Hydroacoustic, infrasonic and seismic monitoring of the submarine eruptive activity and sub-aerial plume generation at South Sarigan, May 2010
【24h】

Hydroacoustic, infrasonic and seismic monitoring of the submarine eruptive activity and sub-aerial plume generation at South Sarigan, May 2010

机译:2010年5月在南萨里根(South Sarigan)对海底爆发活动和海底羽流产生的水声,次声波和地震监测

获取原文
获取原文并翻译 | 示例
           

摘要

Explosive submarine volcanic processes are poorly understood, due to the difficulties associated with both direct observation and continuous monitoring. In this study hydroacoustic, infrasound, and seismic signals recorded during the May 2010 submarine eruption of South Sarigan seamount, Marianas Arc, are used to construct a detailed event chronology. The signals were recorded on stations of the International Monitoring System, which is a component of the verification measures for the Comprehensive Nuclear-Test-Ban Treaty. Numerical hydroacoustic and infrasound propagation modelling confirms that viable propagation paths from the source to receivers exist, and provide traveltimes allowing signals recorded on the different technologies to be associated. The eruption occurred in three stages, separated by three-hour periods of quiescence. 1) A 46 h period during which broadband impulsive hydroacoustic signals were generated in clusters lasting between 2 and 13 min. 95% of the 7602 identified events could be classified into 4 groups based on their waveform similarity. The time interval between clusters decreased steadily from 80 to 25 min during this period. 2) A five-hour period of 10 Hz hydroacoustic tremor, interspersed with large-amplitude, broadband signals. Associated infrasound signals were also recorded at this time. 3) An hour-long period of transient broadband events culminated in two large-amplitude hydroacoustic events and one broadband infrasound signal. A speculative interpretation, consistent with the data, suggests that during phase (1) transitions between endogenous dome growth and phreatomagmatic explosions occurred with the magma ascent rate accelerating throughout the period; during phase (2) continuous venting of fragmented magma occurred, and was powerful enough to breach the sea surface. During the climactic phase (3) discrete powerful explosions occurred, and sufficient seawater was vaporised to produce the contemporaneous 12 km altitude steam plume.
机译:由于与直接观察和连续监测有关的困难,对爆炸性海底火山过程的了解很少。在这项研究中,使用南马里纳斯弧(Marianas Arc)在2010年5月南撒里甘海山海底喷发期间记录的水声,次声和地震信号来构造详细的事件年代。这些信号记录在国际监测系统的台站上,该站是《全面禁止核试验条约》核查措施的组成部分。数值水声和次声传播模型证实了存在从信源到接收器的可行传播路径,并提供了传播时间,从而使在不同技术上记录的信号得以关联。喷发分为三个阶段,由三个小时的静止期隔开。 1)在46 h的时间段内,在持续2到13分钟之间的集群中产生了宽带脉冲水声信号。根据7602个已识别事件的波形相似度,可以将它们中的95%分为4组。在此期间,群集之间的时间间隔从80分钟稳定减少到25分钟。 2)五小时的10 Hz水声震颤,并散布着大幅度的宽带信号。此时还记录了相关的次声信号。 3)一个小时的短暂宽带事件最终导致两个大幅度水声事件和一个宽带次声信号。与数据一致的一种推测性解释表明,在阶段(1)中,内生穹顶生长和吞噬岩浆爆炸之间发生了过渡,整个时期的岩浆上升速度都在加速;在阶段(2)中,发生了破碎岩浆的连续排放,其强度足以破坏海面。在高潮阶段(3),发生了离散的强力爆炸,并蒸发了足够的海水,产生了同时期12 km的蒸汽羽流。

著录项

  • 来源
  • 作者单位

    AWE Blacknest, Reading, UK;

    Royal Netherlands Meteorological Institute (KNMI), De Bilt, The Netherlands,Department of Geoscience and Engineering, Faculty of Civil Engineering and Geosciences, Delft University of Technology, The Netherlands;

    Geophysical Institute, University of Alaska, Fairbanks, USA;

    Institute of Geophysics and Planetary Physics, Scripps Institution of Oceanography, University of California, San Diego, Lajolla, CA 92093-0225, USA;

    Acoustic Remote Sensing Group, Faculty of Aerospace Engineering, Delft University of Technology, The Netherlands;

    Royal Netherlands Meteorological Institute (KNMI), De Bilt, The Netherlands;

    Acoustic Remote Sensing Group, Faculty of Aerospace Engineering, Delft University of Technology, The Netherlands;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sarigan; Submarine eruption; Seismology; Infrasound; Hhydroacoustic;

    机译:撒里甘潜水艇喷发;地震学次声;水声;

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号