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Detecting geyser activity with infrasound

机译:用次声检测间歇泉活动

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摘要

We monitored geyser activity in the Lower Geyser Basin (LGB) of Yellowstone National Park with dual four-element microphone arrays separated by -600 m. The arrays were independently used to identify incident coherent plane wave energy, then conjoint cross beam back-azimuths from the two arrays were used to precisely locate signal sources. During a week in August 2011 we located repeating infrasound events, peaked in energy between 1 and 10 Hz, originating from at least five independent geothermal features, including the episodically erupting Great Fountain, Fountain and Kaleidoscope Geysers, as well as periodic infrasound from nearby Botryoidal and persistent sound from Firehole Spring. Although activity from nearby cone-type geysers was not detected in the infrasound band up through 50 Hz, the major fountain-type geysers (i.e., with columns greater than 10 m) could be detected at several kilometers, and two minor geysers (i.e., a few meters in eruption height) could be tracked at distances up to a few hundred meters. Detection of geyser activity was especially comprehensive at night when ambient noise was low. We conclude that infrasound monitoring of fountain-type geysers permits convenient tracking of geyser activity, episodicity, signal duration, energy content, and spectral content. These parameters enable objective statistical quantification of geyser behavior and changes over time that may be due to external forcing. Infrasonic study of geyser activity in an individual basin has great monitoring utility and can be reasonably accomplished with two or more distributed sensor arrays.
机译:我们使用相隔-600 m的双四元素麦克风阵列监视了黄石国家公园下间歇泉盆地(LGB)的间歇泉活动。分别将阵列用于识别入射相干平面波能量,然后使用来自两个阵列的联合横梁后方位角精确定位信号源。在2011年8月的一个星期中,我们发现了重复的次声事件,其能量峰​​值在1到10 Hz之间,其起因于至少五个独立的地热特征,包括大地喷泉,喷泉和万花筒间歇泉的间歇性爆发,以及附近Botryoidal的周期性次声和来自Firehole Spring的持续声音。尽管在高达50 Hz的次声带中未检测到附近的锥形间歇泉的活动,但可以在几公里处检测到主要的喷泉间歇泉(即,柱长大于10 m)和两个较小的间歇泉(即,可以在几百米的距离内追踪到几米的喷发高度)。在夜间环境噪声较低的夜晚,对间歇泉活动的检测特别全面。我们得出结论,喷泉式间歇泉的次声监测可以方便地跟踪间歇泉的活动,病害,信号持续时间,能量含量和光谱含量。这些参数可以对间歇泉的行为进行客观的统计量化,并且可以随时间变化,这可能是由于外部强迫造成的。对单个流域中间歇泉活动的次声研究具有很大的监测实用性,并且可以通过两个或多个分布式传感器阵列合理地完成。

著录项

  • 来源
    《Journal of Volcanology and Geothermal Research》 |2013年第15期|105-117|共13页
  • 作者单位

    Department of Ceosciences, Boise State University, 1910 University Drive, Boise, ID 83702, United States;

    Department of Earth and Environmental Sciences, New Mexico Tech, 801 Leroy Place, Socorro, NM 87801, United States;

    Department of Earth and Environmental Sciences, New Mexico Tech, 801 Leroy Place, Socorro, NM 87801, United States;

    Dipartimento di Scienze Biologiche, Geologiche e Ambientali, Sezione Scienze della Terra, Universita di Catania, Corso Italia 57, 95129 Catania, Italy;

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

    geyser; yellowstone; infrasound monitoring; array analysis;

    机译:喷泉;黄石次声监测;阵列分析;

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