Ocean Bottom Seismometer: Design and Test of a Measurement System for Marine Seismology
Донный сейсмометр: разработка и испытание измерительной системы для морской сейсмологии
2012-03-19
SCID: 54.1/w64f2fxb
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Ocean Bottom SeismometerSignal-to-Noise Ratiocontinuous data acquisitionlow power data loggermarine seismology
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Abstract (AI)
The Ocean Bottom Seismometer (OBS) is a key instrument for the geophysical study of sea sub-bottom layers. At present, more reliable autonomous instruments capable of recording underwater for long periods of time and therefore handling large data storage are needed. This paper presents a new Ocean Bottom Seismometer designed to be used in long duration seismic surveys. Power consumption and noise level of the acquisition system are the key points to optimize the autonomy and the data quality. To achieve our goals, a new low power data logger with high resolution and Signal-to-Noise Ratio (SNR) based on Compact Flash memory card is designed to enable continuous data acquisition. The equipment represents the achievement of joint work from different scientific and technological disciplines as electronics, mechanics, acoustics, communications, information technology, marine geophysics, etc. This easy to handle and sophisticated equipment allows the recording of useful controlled source and passive seismic data, as well as other time varying data, with multiple applications in marine environment research. We have been working on a series of prototypes for ten years to improve many of the aspects that make the equipment easy to handle and useful to work in deep-water areas. Ocean Bottom Seismometers (OBS) have received growing attention from the geoscience community during the last forty years. OBS sensors recording motion of the ocean floor hold key information in order to study offshore seismicity and to explore the Earth's crust. In a seismic survey, a series of OBSs are placed on the seabed of the area under study, where they record either natural seismic activity or acoustic signals generated by compressed air-guns on the ocean surface. The resulting data sets are subsequently used to model both the earthquake locations and the crustal structure.
Key Findings
1
A new Ocean Bottom Seismometer is designed for long-duration autonomous seismic surveys in deep-water marine environments.
2
Power consumption and acquisition-system noise are optimized to improve instrument autonomy and seismic data quality.
3
Ten years of prototype development improved the OBS’s handling and operational suitability for deep-water deployment.
4
The instrument records both controlled-source and passive seismic signals, supporting earthquake-location and crustal-structure studies.
5
The system uses a low-power, high-resolution data logger with high signal-to-noise ratio and Compact Flash storage for continuous acquisition.
Research Object
A newly designed autonomous Ocean Bottom Seismometer (OBS) system for long-duration marine seismic surveys
Research Subject
The OBS system’s power consumption, acquisition-system noise, recording autonomy, data quality, and capability to acquire continuous passive and controlled-source seismic data for studying offshore seismicity and crustal structure
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2012-03-19
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