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超导重力测量数据中地震事件的频域特征信息分析
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作者 杜非白 杨红樱 +1 位作者 赵星 刘永梅 《地震科学进展》 2024年第12期831-839,共9页
超导重力仪观测数据精度可达0.1μGal(1μGal=10^(−8) m/s^(2)),是获取地震重力信号频域特征的重要依据。本文利用中国计量科学研究院iGrav-012超导重力仪观测数据,基于谱分析探究地震事件发生前后重力场扰动信号的优势频段随震级和震... 超导重力仪观测数据精度可达0.1μGal(1μGal=10^(−8) m/s^(2)),是获取地震重力信号频域特征的重要依据。本文利用中国计量科学研究院iGrav-012超导重力仪观测数据,基于谱分析探究地震事件发生前后重力场扰动信号的优势频段随震级和震中距的变化特征。研究表明:4级以上远震中,震级和震中距对同震响应、震前和震后不同时窗超导重力数据优势频段的影响不显著。地震的发生对超导重力震前震后数据的频域成分有调制作用,即震前1小时和震后1小时时窗内PSD曲线的谱峰中心个数和谱峰中心频率会发生变化。同震期间超导重力数据PSD曲线的谱峰中心个数和谱峰中心频率无显著规律。这为高频次地球内部活动导致重力场变化信息的深度分析提供了新的认识,揭示了基于高精度超导重力数据频域特征分析实现地震孕育及发生过程动态监测的应用前景。 展开更多
关键词 超导重力测量 地震重力扰动 谱分析 频域特征
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Frequency characteristics and far-field effect of gravity perturbation before earthquake 被引量:1
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作者 强建科 鲁凯 +4 位作者 张钱江 满开峰 李俊营 毛先成 赖健清 《Applied Geophysics》 SCIE CSCD 2017年第1期1-9,188,共10页
We used high-pass filtering and the Fourier transform to analyze tidal gravity data prior to five earthquakes from four superconducting gravity stations around the world. A stable gravitational perturbation signal is ... We used high-pass filtering and the Fourier transform to analyze tidal gravity data prior to five earthquakes from four superconducting gravity stations around the world. A stable gravitational perturbation signal is received within a few days before the earthquakes. The gravitational perturbation signal before the Wenchuan earthquake on May 12, 2008 has main frequency of 0.1–0.3 Hz, and the other four have frequency bands of 0.12-0.17 Hz and 0.06-0.085 Hz. For earthquakes in continental and oceanic plate fault zones, gravity anomalies often appear on the superconducting gravimeters away from the epicenter, whereas the stations near the epicenter record small or no anomalies. The results suggest that this kind of gravitational perturbation signals correlate with earthquake occurrence, making them potentially useful earthquake predictors. The far-field effect of the gravitational perturbation signals may reveal the interaction mechanisms of the Earth’s tectonic plates. However, owing to the uneven distribution of gravity tide stations, the results need to be further confirmed in the future. 展开更多
关键词 EARTHQUAKE pre-seismic gravity perturbation superconducting gravimeter far-field effect
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