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Core hole seismometer development for low-noise seismic data in a long-term seafloor observatory

机译:在长期海底观测站中开发低噪声地震数据的岩心孔地震仪

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Longstanding problems unique to marine seismology (in contrast to land-based studies) include high levels of environmental noise, unpredictable instrument placement, short measurement duration, and limited numbers of instruments. Traditional instruments are deployed and recovered from a surface ship with no capability to verify data acquisition until the end of the experiment. They are often poorly sited and usually poorly coupled to the seafloor. Experiments have typically been short in duration with only a minimum number of instruments. The result of these logistical problems is high background noise, sparse data recovery (compared to continental stations), and low fidelity data. In an effort to solve many of these problems, we have developed and deployed "corehole seismometers" (1-90 Hz) into small boreholes drilled by an underwater drilling system, using a tethered Remotely Operated Vehicle (ROV). The results are seismic data with a significantly lower background noise level, a lower threshold for recognition of small events, well-oriented (and useable) horizontal seismograms, and a much longer deployment capability. We present new data from these instruments and compare them with data from two types of traditional instruments deployed from a surface ship. These contemporaneous deployments were conducted during 1996 and 1997 in Monterey Bay. [References: 13]
机译:海洋地震学独有的长期问题(与陆基研究相反)包括高水平的环境噪声,不可预测的仪器放置,较短的测量时间和有限的仪器数量。在实验结束之前,传统仪器是从水面舰艇上部署和回收的,无法验证数据采集。它们通常位置不佳,通常与海底的耦合性很差。通常,仅使用最少数量的仪器进行实验的时间很短。这些后勤问题的结果是高背景噪音,稀疏的数据恢复(与大陆台相比)和低保真度数据。为了解决许多这样的问题,我们开发了“岩心地震仪”(1-90 Hz),并使用系留的遥控车(ROV)将其部署到了由水下钻井系统钻出的小孔中。结果是地震数据的背景噪声水平明显降低,识别小事件的阈值降低,定向地震(和可用)水平地震波记录图更丰富,部署能力更长。我们提供了来自这些仪器的新数据,并将它们与从水面舰艇部署的两种传统仪器的数据进行比较。这些同时部署是在1996年和1997年在蒙特雷湾进行的。 [参考:13]

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