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Indian Ocean ridge seismicity observed with a permanent hydroacoustic network

机译:永久水声网络观测到的印度洋洋脊地震活动

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The distribution of earthquakes along the Indian Ocean ridge system between January 18 and October 20, 2003 is investigated using data from two hydrophone stations of the International Monitoring System's global network. Coherent array processing of earthquake-induced hydroacoustic T-waves is used to determine precise arrival times and back azimuths that allow automatic location of the earthquakes. We observed 4725 events throughout the Indian Ocean Basin. Here, we examine 1146 earthquakes from the Central and Southeast Indian Ridge. Source level estimates from the hydroacoustic signals indicate that the hydroacoustic network is at least one magnitude unit more sensitive than the seismic network for Indian Ocean ridge earthquakes. The seismicity primarily clusters at ridge transform offsets. Events are observed off the ridge axis near Boomerang and St. Pierre Seamounts, the active expression of the Amsterdam-St. Paul Hotspot. Seismic gaps are observed at several ridge segments with anomalous bathymetric highs.
机译:利用国际监测系统全球网络中两个水听器站的数据,调查了2003年1月18日至10月20日期间印度洋山脊系统的地震分布。地震诱发的水声T波的相干阵列处理用于确定精确的到达时间和后方位角,从而可以自动定位地震。我们在整个印度洋盆地观察到4725次事件。在这里,我们研究了来自中部和东南印第安岭的1146次地震。来自水声信号的震源水平估计表明,水声网络比印度洋山脊地震的地震网络的灵敏度至少高一个数量级。地震活动性主要集中在脊变换偏移处。沿着Boomerang和圣皮埃尔海山(St. Pierre Seamounts)附近的山脊轴观察到了事件,这是阿姆斯特丹圣玛丽教堂的活跃表现。保罗热点。在几个山脊段观察到了地震缝隙,反常的测深高。

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