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Seismic-induced accelerations detected by two parallel gravity meters in continuous recording with a high sampling rate at Etna volcano

机译:在Etna火山的高采样率连续记录中,通过两个平行重力计检测的地震诱导的加速度

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摘要

We analyse a microgravity data set acquired from two spring LaCoste & Romberg gravity meters operated in parallel at the same site on Etna volcano (Italy) for about two months (August – September 2005). The high sampling rate acquisition (2Hz) allowed the correlation of short-lasting gravity fluctuations with seismic events. After characterizing the oscillation behavior of the meters, through the study of spectral content and the background noise level of both sequences, we recognized fluctuations in the gravity data, spanning a range of periods from 1 second to about 30 seconds dominated by components with a period of about 15 ÷ 25 seconds, during time intervals encompassing both local seismic events and large worldwide earthquakes. The data analyses demonstrate that observed earthquake-induced gravity fluctuations have some differences due to diverse spectral content of the earthquakes. When local seismic events which present high frequency content excite the meters, the correlation between the two gravity signals is poor (factor < 0.3). Vice versa, when large worldwide earthquakes occur and low frequency seismic waves dominate the ensuing seismic wavefield, the resonance frequencies of the meters are excited and they react according to more common features. In the latter case, the signals from the two instruments are strongly correlated to each other (up to 0.9). In this paper the behaviors of spring gravimeters in the frequency range of the disturbances produced by local and large worldwide earthquakes are presented and discussed.
机译:我们分析了从两个弹簧Lacoste&Romberg Gravity Meter中获取的微匍匐数据集,并在与Etna火山(意大利)的同一站点上并行运行大约两个月(2005年8月)。高采样率采集(2Hz)允许与地震事件的短持久重力波动相关。在表征仪表的振荡行为后,通过研究光谱内容和两个序列的背景噪声水平,我们认可重力数据中的波动,跨越一秒钟到大约30秒的时间,由一段时间的组件为主。约15‰25秒,在时间间隔内包括当地地震事件和大型全球地震。数据分析表明,由于地震的多样化谱含量,观察到的地震诱导的重力波动具有一些差异。当呈现高频内容激发仪表的局部地震事件时,两个重力信号之间的相关性差(因子<0.3)。反之亦然,当发生大全球地震和低频地震波主导随后的地震波场时,仪表的共振频率令人兴奋,并根据更常见的特征反应。在后一种情况下,来自两个仪器的信号彼此强烈相关(高达0.9)。本文提出并讨论了局部和大型全球地震产生的频率范围内弹簧重量计的行为。

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