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The design and testing of a free-fall device for recording seismic activity beneath the ocean floor

机译:用于记录海床以下地震活动的自由落体装置的设计和测试

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For the last thirty years ocean bottom seismometers (OBSs) have been used to survey the oceans. However, the quality of the data they produce is often degraded due to poor coupling or high levels of ambient noise. In contrast, sensors placed beneath the seafloor avoid many of these problems. For the last two decades burials have relied on Ocean Drilling Program (ODP) boreholes. This approach is expensive and demands numerous human resources. In addition, the locations of these boreholes, determined by the ODP, are rarely desirable for monitoring seismic activity. In this paper a sub-bottom seismic acquisition system is presented that uses free-fall devices, or deep ocean seismic penetrators (DOSP), to place sensors several tens of metres beneath the seafloor. The DOSPs weigh approximately 1800 kg, achieve terminal velocities between 30-50 m/s and penetrate to depths of 20-30 metres in soft sea sediments. Once buried, they record seismic activity and transmit data back to the surface using a frequency shift keyed (FSK) modulation technique. The results of an experiment conducted in the Mediterranean using this system are presented. These confirm the predicted dynamic and kinematic behaviour of the DOSP and allow an assessment of the ambient seismic noise level at a depth of /spl ap/30 metres beneath the seafloor. In conclusion this paper discusses the potential use of free-fall devices to increase our understanding of processes in the deep oceans, with particular emphasis on their applicability to future deep ocean seismology.
机译:在过去的三十年中,海底地震仪(OBS)已用于测量海洋。但是,由于耦合不良或高水平的环境噪声,它们产生的数据质量通常会降低。相反,放置在海底下方的传感器可避免许多此类问题。在过去的二十年中,埋葬依靠的是海洋钻探计划(ODP)钻孔。这种方法是昂贵的并且需要大量的人力资源。另外,由ODP确定的这些井眼的位置对于监测地震活动是非常不希望的。在本文中,提出了一种地下地震采集系统,该系统使用自由落体设备或深海地震穿透器(DOSP)将传感器放置在海底下数十米处。 DOSP的重量约为1800 kg,最终速度在30-50 m / s之间,并能穿透软海沉积物中20-30米的深度。一旦埋入地下,他们将记录地震活动,并使用频移键控(FSK)调制技术将数据传输回地面。介绍了使用此系统在地中海进行的实验结果。这些证实了DOSP的预测动态和运动学特性,并允许评估海底以下/ spl ap / 30米深度处的环境地震噪声水平。总而言之,本文讨论了自由落体装置的潜在用途,以加深我们对深海过程的了解,并特别强调了它们对未来深海地震学的适用性。

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