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On the potential of recording earthquakes for global seismic tomography by low-cost autonomous instruments in the oceans

机译:关于使用低成本海洋自主仪器记录地震以进行全球地震层析成像的潜力

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We describe the development and testing of an autonomous device designed to revolutionize Earth structure determination via global seismic tomography by detecting earthquakes at teleseismic distances in the oceans. One prototype MERMAID, short for Mobile Earthquake Recording in Marine Areas by Independent Divers, was constructed and tested at sea. The instrument combines two readily available, relatively low-cost but state-of-the-art components: a Sounding Oceanographic Lagrangian Observer, or SOLO float, and an off-the-shelf hydrophone, with custom-built data logging hardware. We report on the development of efficient wavelet-based algorithms for the detection and discrimination of seismic events and analyze three time series of acoustic pressure collected at a depth of 700 m in pilot experiments conducted offshore San Diego, CA. In these tests, over 120 hours of data were gathered, and five earthquakes, of which one was teleseismic, were recorded and identified. Quantitative estimates based on these results suggest that instruments of the MERMAID type may collect up to a hundred tomographically useful teleseismic events per year. The fmal design will also incorporate a Global Positioning System receiver, onboard signal processing software optimized for low-power chips, and high-throughput satellite communication equipment for telemetered data transfer. With these improvements, we hope to realize our vision of a global array of autonomous floating sensors for whole-earth seismic tomography.
机译:我们描述了一种自主设备的开发和测试,该设备旨在通过探测海洋远震距离的地震,通过全球地震层析成像技术彻底改变地球结构的确定。在海上建造并测试了一个原型MERMAID,它是独立潜水员在海洋地区进行移动地震记录的简称。该仪器结合了两个现成的,成本相对较低但最先进的组件:Sounding Oceanographic Lagrangian Observer或SOLO float,以及现成的水听器,以及定制的数据记录硬件。我们报告了基于小波的高效算法,用于检测和识别地震事件,并在加利福尼亚州圣迭戈市进行的先导实验中分析了在700 m深度处收集的三个声压时间序列。在这些测试中,收集了120多个小时的数据,并记录并识别了5次地震,其中1次是地震。基于这些结果的定量估计表明,MERMAID类型的仪器每年可能收集多达一百项断层摄影有用的地震事件。最终设计还将包括全球定位系统接收器,针对低功耗芯片进行了优化的机载信号处理软件,以及用于遥测数据传输的高吞吐量卫星通信设备。通过这些改进,我们希望实现我们对于用于全地球地震层析成像的全球性的自主浮动传感器阵列的愿景。

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